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Molecular Mechanism and Molecular Design of Lubricating Oil Antioxidants 被引量:1
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作者 Su Shuo Long Jun +2 位作者 Duan Qinghua Zhou Han Zhao Yi 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS CSCD 2024年第2期135-145,共11页
To overcome the limitations of traditional experimental“trial and error”methods in lubricant additive design,a new molecular design method based on molecular structure parameters is established here.The molecular me... To overcome the limitations of traditional experimental“trial and error”methods in lubricant additive design,a new molecular design method based on molecular structure parameters is established here.The molecular mechanism of the antioxidant reaction of hindered phenol,diphenylamine,and alkyl sulfide are studied via molecular simulations.Calculation results show that the strong electron-donating ability and high hydrogen-donating activity of the antioxidant molecule and the low hydrogen-abstracting activity of free radicals formed after dehydrogenation are the internal molecular causes of the shielding of phenol and diphenylamine from scavenging peroxy free radicals,and the strong electron-donating ability is the internal molecular cause of the high activity of thioether in decomposing alkyl hydrogen peroxide.Based on this antioxidant molecular mechanism,a molecular design rule of antioxidant is proposed,namely“high EHOMO,large Q(S),low bond dissociation energy BDE(O—H)and BDE(N—H)”.Two new antioxidants,PAS-I and PAS-II,are designed and prepared by chemical bonding of hindered phenol,diphenylamine,and sulfur atoms.Experimental results show that these antioxidants both have excellent antioxidant effects in lubricating oil,and that PAS-II is the superior antioxidant,consistent with theoretical predictions. 展开更多
关键词 lubricating oil ANTIOXIDANT molecular mechanism molecular design antioxidant performance
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Design method of extractant for liquid-liquid extraction based on elements and chemical bonds
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作者 Yuwen Wei Chunling Zhang +4 位作者 Yue Zhang Lili Wang Li Xia Xiaoyan Sun Shuguang Xiang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第4期193-202,共10页
In the petrochemical industry process, the relative volatility between the components to be separated is close to one or the azeotrope that systems are difficult to separate. Liquid-liquid extraction is a common and e... In the petrochemical industry process, the relative volatility between the components to be separated is close to one or the azeotrope that systems are difficult to separate. Liquid-liquid extraction is a common and effective separation method, and selecting an extraction agent is the key to extraction technology research. In this paper, a design method of extractants based on elements and chemical bonds was proposed. A knowledge-based molecular design method was adopted to pre-select elements and chemical bond groups. The molecules were automatically synthesized according to specific combination rules to avoid the problem of “combination explosion” of molecules. The target properties of the extractant were set, and the extractant meeting the requirements was selected by predicting the correlation physical properties of the generated molecules. Based on the separation performance of the extractant in liquid-liquid extraction and the relative importance of each index, the fuzzy comprehensive evaluation membership function was established, the analytic hierarchy process determined the mass ratio of each index, and the consistency test results were passed. The results of case study based on quantum chemical analysis demonstrated that effective determination of extractants for the analysis of benzene-cyclohexane systems. The results unanimously prove that the method has important theoretical significance and application value. 展开更多
关键词 molecular design Element and chemical bonds molecular simulation THERMODYNAMICS Solvent extraction
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Machine-Learning-Assisted Design of Deep Eutectic Solvents Based on Uncovered Hydrogen Bond Patterns
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作者 Usman L.Abbas Yuxuan Zhang +4 位作者 Joseph Tapia Selim Md Jin Chen Jian Shi Qing Shao 《Engineering》 SCIE EI CAS CSCD 2024年第8期74-83,共10页
Non-ionic deep eutectic solvents(DESs)are non-ionic designer solvents with various applications in catalysis,extraction,carbon capture,and pharmaceuticals.However,discovering new DES candidates is challenging due to a... Non-ionic deep eutectic solvents(DESs)are non-ionic designer solvents with various applications in catalysis,extraction,carbon capture,and pharmaceuticals.However,discovering new DES candidates is challenging due to a lack of efficient tools that accurately predict DES formation.The search for DES relies heavily on intuition or trial-and-error processes,leading to low success rates or missed opportunities.Recognizing that hydrogen bonds(HBs)play a central role in DES formation,we aim to identify HB features that distinguish DES from non-DES systems and use them to develop machine learning(ML)models to discover new DES systems.We first analyze the HB properties of 38 known DES and 111 known non-DES systems using their molecular dynamics(MD)simulation trajectories.The analysis reveals that DES systems have two unique features compared to non-DES systems:The DESs have①more imbalance between the numbers of the two intra-component HBs and②more and stronger inter-component HBs.Based on these results,we develop 30 ML models using ten algorithms and three types of HB-based descriptors.The model performance is first benchmarked using the average and minimal receiver operating characteristic(ROC)-area under the curve(AUC)values.We also analyze the importance of individual features in the models,and the results are consistent with the simulation-based statistical analysis.Finally,we validate the models using the experimental data of 34 systems.The extra trees forest model outperforms the other models in the validation,with an ROC-AUC of 0.88.Our work illustrates the importance of HBs in DES formation and shows the potential of ML in discovering new DESs. 展开更多
关键词 Machine learning Deep eutectic solvents molecular dynamics simulations Hydrogen bond molecular design
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Molecular engineering binuclear copper catalysts for selective CO_(2) reduction to C_(2) products
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作者 Qi Zhao Kai Lei +2 位作者 Bao Yu Xia Rachel Crespo-Otero Devis Di Tommaso 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期166-173,I0005,共9页
Molecular copper catalysts serve as exemplary models for correlating the structure-reaction-mechanism relationship in the electrochemical CO_(2) reduction(eCO_(2)R),owing to their adaptable environments surrounding th... Molecular copper catalysts serve as exemplary models for correlating the structure-reaction-mechanism relationship in the electrochemical CO_(2) reduction(eCO_(2)R),owing to their adaptable environments surrounding the copper metal centres.This investigation,employing density functional theory calculations,focuses on a novel family of binuclear Cu molecular catalysts.The modulation of their coordination configuration through the introduction of organic groups aims to assess their efficacy in converting CO_(2) to C_(2)products.Our findings highlight the crucial role of chemical valence state in shaping the characteristics of binuclear Cu catalysts,consequently influencing the eCO_(2)R behaviour,Notably,the Cu(Ⅱ)Cu(Ⅱ)macrocycle catalyst exhibits enhanced suppression of the hydrogen evolution reaction(HER),facilitating proton trans fer and the eCO_(2)R process.Fu rthermore,we explo re the impact of diverse electro n-withdrawing and electron-donating groups coordinated to the macrocycle(R=-F,-H,and-OCH_3)on the electron distribution in the molecular catalysts.Strategic placement of-OCH_3 groups in the macrocycles leads to a favourable oxidation state of the Cu centres and subsequent C-C coupling to form C_(2) products.This research provides fundamental insights into the design and optimization of binuclear Cu molecular catalysts for the electrochemical conversion of CO_(2) to value-added C_(2) products. 展开更多
关键词 molecular catalyst design Selective CO_(2)reduction C_(2)products Density functional theory calculations
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Molecular Design and Electronic Structure Investigation of Novel Nitrogen Heteroatom 2-β-Naphthylbenzoxazoles
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作者 孙京国 冯玉玲 姚国伟 《Journal of Beijing Institute of Technology》 EI CAS 2002年第3期280-284,共5页
For the aim of finding new available functional materials, a series of nitrogen heteroatom 2 β naphthylbenzoxazole molecules were designed based on the experiment and theoretical studies of 2 β naphthylb... For the aim of finding new available functional materials, a series of nitrogen heteroatom 2 β naphthylbenzoxazole molecules were designed based on the experiment and theoretical studies of 2 β naphthylbenzoxazole molecule. Geometry optimization of the 2 β naphthylbenzoxazole was carried out by using Hyperchem Molecular Mechanics plus MM+. The planar molecular structure was obtained. The quantum chemistry calculating method PPP SCF CI, which is specially available to treat electron spectrum, was applied to investigate each novel designed molecules. Their electronic structures were analyzed in detail, it shows that total π electron energy decreased linearly with the number of replaced nitrogen. Single nitrogen atom located in benzoxazole ring or naphthalene ring results in contrary changes of level difference of FMO; multiple nitrogen atoms located in different molecular positions will lead to polarization of extremum in the level difference of FMO; and 5 nitrogen heteroatoms reach the culmination. Considering other electronic structure information, some favorable designed molecules were identified. 展开更多
关键词 naphthylbenzoxazole molecular design MM+ PPP SCF CI electronic structure
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Binding Mechanism and Molecular Design of Benzimidazole/Benzothiazole Derivatives as Potent Abl T3151 Mutant Inhibitors 被引量:1
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作者 林伟聪 谭社培 +3 位作者 周盛福 郑晓杰 吴文娟 郑康成 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2017年第4期429-442,I0001,I0002,共16页
Despite the efficacy of imatinib therapy in chronic myelogenous leukemia, the development of drug-resistant Abl mutants, especially the most difficult overcoming T3151 mutant, makes the search for new Abl T3151 inhibi... Despite the efficacy of imatinib therapy in chronic myelogenous leukemia, the development of drug-resistant Abl mutants, especially the most difficult overcoming T3151 mutant, makes the search for new Abl T3151 inhibitors a very interesting challenge in medicinal chem- istry. In this work, a multistep computational framework combining the three dimensional quantitative structure-activity relationship (3D-QSAR), molecular docking, molecular dy- namics (MD) simulation and binding free energy calculation, was performed to explore the structural requirements for the Abl T315I activities of benzimidazole/benzothiazole derivatives and the binding mechanism between the inhibitors and Abl T315I. The established 3D-QSAR models exhibited satisfactory internal and external predictability. Docking study elucidated the comformations of compounds and the key amino acid residues at the binding pocket, which were confirmed by MD simulation. The binding free energies correlated well with the experimental activities. The MM-GBSA energy decomposition revealed that the van der Waals interaction was the major driving force for the interaction between the ligands and Abl T3151. The hydrogen bond interactions between the inhibitors and Met318 also played an important role in stablizing the binding of compounds to Abl T315I. Finally, four new compounds with rather high Abl T3151 activities were designed and presented to experimenters for reference. 展开更多
关键词 Abl T315I mutant inhibitor Benzimidazole/benzothiazole derivative Three dimensional quantitative structure-activity relationship Docking study molecular dynamics simulation molecular design
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Molecular design, synthesis strategies and recent advances of hydrogels for wound dressing applications 被引量:6
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作者 Dan Zeng Shihong Shen Daidi Fan 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第2期308-320,共13页
With the changes in the modern disease spectrum,pressure ulcers,diabetic feet,and vascular-derived diseases caused refractory wounds is increasing rapidly.The development of wound dressings has partly improved the eff... With the changes in the modern disease spectrum,pressure ulcers,diabetic feet,and vascular-derived diseases caused refractory wounds is increasing rapidly.The development of wound dressings has partly improved the effect of wound management.However,traditional wound dressings can only cover the wound and block bacteria,but are generally powerless to recurrent wound infection and tissue healing.There is an urgent need to develop a new type of wound dressing with comprehensive performance to achieve multiple effects such as protecting the wound site from the external environment,absorbing wound exudate,anti-inflammatory,antibacterial,and accelerating wound healing process.Hydrogel wound dressings have the aforementioned characteristics,and can keep the wound in a moist environment because of the high water content,which is an ideal choice for wound treatment.This review introduces the wound healing process and the development and performance advantages of hydrogel wound dressings.The choice of different preparation materials gives the particularities of different hydrogel wound dressings.It also systematically explains the main physical and chemical crosslinking methods for hydrogel synthesis.Besides,in-depth discussion of four typical hydrogel wound dressings including double network hydrogels,nanocomposite hydrogels,drug-loaded hydrogels and smart hydrogels fully demonstrates the feasibility of developing hydrogels as wound dressing products and their future development trends. 展开更多
关键词 HYDROGELS Wound dressing molecular design Crosslinked networks Biomedical applications
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Molecular design,synthesis and biological activities of amidines as new ketol-acid reductoisomerase inhibitors 被引量:3
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作者 Bao Lei Wang Yong Hong Li Jian Guo Wang Yi Ma Zheng Ming Li 《Chinese Chemical Letters》 SCIE CAS CSCD 2008年第6期651-654,共4页
Diamidine (A) was identified in our in vitro bio-assay as a possible inhibitor of ketol-acid reductoisomerase (KARI) from the ACD database search based on the known three-dimensional crystal structure of KARI. An ... Diamidine (A) was identified in our in vitro bio-assay as a possible inhibitor of ketol-acid reductoisomerase (KARI) from the ACD database search based on the known three-dimensional crystal structure of KARI. An investigation on interaction of A on KARI active sites, led to the design and synthesis of 15 novel monoamidines. Some of those showed better biological activity than A on rice KARI (in vitro) and in greenhouse herbicidal tests (in vivo). The structure-biological activity relationship was investigated, which provides valuable information to further study of potential KARI inhibitors. 展开更多
关键词 KARL molecular design SYNTHESIS Biological activity
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Molecular Design of Conjugated Small Molecule Nanoparticles for Synergistically Enhanced PTT/PDT 被引量:3
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作者 Wei Shao Chuang Yang +5 位作者 Fangyuan Li Jiahe Wu Nan Wang Qiang Ding Jianqing Gao Daishun Ling 《Nano-Micro Letters》 SCIE EI CAS CSCD 2020年第11期25-38,共14页
Simultaneous photothermal therapy(PTT)and photodynamic therapy(PDT)is beneficial for enhanced cancer therapy due to the synergistic effect.Conventional materials developed for synergistic PTT/PDT are generally multico... Simultaneous photothermal therapy(PTT)and photodynamic therapy(PDT)is beneficial for enhanced cancer therapy due to the synergistic effect.Conventional materials developed for synergistic PTT/PDT are generally multicomponent agents that need complicated preparation procedures and be activated by multiple laser sources.The emerging monocomponent diketopyrrolopyrrole(DPP)-based conjugated small molecular agents enable dual PTT/PDT under a single laser irradiation,but suffer from low singlet oxygen quantum yield,which severely restricts the therapeutic efficacy.Herein,we report acceptor-oriented molecular design of a donor-acceptor-donor(D-A-D)conjugated small molecule(IID-ThTPA)-based phototheranostic agent,with isoindigo(IID)as selective acceptor and triphenylamine(TPA)as donor.The strong D-A strength and narrow singlet-triplet energy gap endow IID-ThTPA nanoparticles(IID-ThTPA NPs)high mass extinction coefficient(18.2 L g^-1 cm^-1),competitive photothermal conversion efficiency(35.4%),and a dramatically enhanced singlet oxygen quantum yield(84.0%)comparing with previously reported monocomponent PTT/PDT agents.Such a high PTT/PDT performance of IID-ThTPA NPs achieved superior tumor cooperative eradicating capability in vitro and in vivo. 展开更多
关键词 molecular design Isoindigo Conjugated small molecule nanoparticles Singlet-triplet energy gap Synergistic PTT/PDT
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INTERFACIAL MOLECULAR DESIGN OF A RIGID- PARTICLE TOUGHENED POLYAMIDE 6 COMPOSITE 被引量:1
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作者 欧玉春 于中振 +1 位作者 冯宇鹏 方晓萍 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 1993年第1期31-37,共7页
The effects of interfacial modifier on the mechanical properties of kaolin-filled polyamide 6 (PA6) have been studied. The interracial interaction between polyamide 6 and kaolin has been character ized by means of inf... The effects of interfacial modifier on the mechanical properties of kaolin-filled polyamide 6 (PA6) have been studied. The interracial interaction between polyamide 6 and kaolin has been character ized by means of infrared spectroscopy (IR) and scanning electron microscopy (SEM). The results show that the role of the interracial modifier lies in forming an elastic interlayer with good adhesion between kaolin and PA 6. A composite with high impact strength, high tensile strength and high elastic modulus can be obtained by inserting the elastic interfacial modifier into the rigid-particle-filled polymer system. 展开更多
关键词 INTERFACE KAOLIN TOUGHNESS Interfacial molecular design Polyamide 6
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Molecular design towards two-dimensional electron acceptors for efficient non-fullerene solar cells 被引量:1
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作者 Yan Liu Zixian Liu +5 位作者 Zhicheng Hu Yuanying Liang Zhenfeng Wang Zhongxin Chen Fei Huang Yong Cao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第12期190-198,共9页
Non-fullerene polymer solar cells(NF-PSCs) have gained wide attention recently. Molecular design of non-fullerene electron acceptors effectively promotes the photovoltaic performance of NF-PSCs. However,molecular elec... Non-fullerene polymer solar cells(NF-PSCs) have gained wide attention recently. Molecular design of non-fullerene electron acceptors effectively promotes the photovoltaic performance of NF-PSCs. However,molecular electron acceptors with 2-dimensional(2 D) configuration and conjugation are seldom reported.Herein, we designed and synthesized a series of novel 2 D electron acceptors for efficient NF-PSCs. With rational optimization on the conjugated moieties in both vertical and horizontal direction, these 2 D electron acceptors showed appealing properties, such as good planarity, full-spectrum absorption, high absorption extinction coefficient, and proper blend morphology with donor polymer. A high PCE of 9.76%was achieved for photovoltaic devices with PBDB-T as the donor and these 2 D electron acceptors. It was also found the charge transfer between the conjugated moieties in two directions of these 2 D molecules contributes to the utilization of absorbed photos, resulting in an exceptional EQE of 87% at 730 nm. This work presents rational design guidelines of 2 D electron acceptors, which showed great promise to achieve high-performance non-fullerene polymer solar cells. 展开更多
关键词 Two-dimensional molecules Perylene diimide Electron acceptors molecular design Non-fullerene solar cells
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A Property Based Approach for Simultaneous Process and Molecular Design 被引量:1
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作者 Fadwa Tahra Eljack Charles Conrad Solvason +1 位作者 Nishanth Chemmangattuvalappil Mario Richard Eden 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2008年第3期424-434,共11页
In this work, property clustering techniques and group contribution methods are combined to enable simultaneous consideration of process performance requirements and molecular property constraints. Using this methodol... In this work, property clustering techniques and group contribution methods are combined to enable simultaneous consideration of process performance requirements and molecular property constraints. Using this methodology, the process design problem is solved to identify the property targets corresponding to the desired process performance. A significant advantage of the developed methodology is that for problems that can be satisfactorily described by only three properties, the process and molecular design problems can be simultaneously solved visually on a ternary diagram, irrespective of how many molecular fragments are included in the search space. On the ternary cluster diagram, the target properties are represented as individual points if given as discrete values or as a region if given as intervals. The structure and identity of candidate components is then identified by combining or "mixing" molecular fragments until the resulting properties match the targets. 展开更多
关键词 property integration group contribution process and molecular design
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Quantum chemical aided molecular design of ionic liquids as green electrolytes for electrodeposition of active metals 被引量:1
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作者 田国才 周雪娇 +1 位作者 李坚 华一新 《中国有色金属学会会刊:英文版》 EI CSCD 2009年第6期1639-1644,共6页
Quantum chemical calculation was used to estimate the reduction potentials of 25 organic cations and the oxidation potentials of 11 anions.This information was used to select promising cations and anions for the prepa... Quantum chemical calculation was used to estimate the reduction potentials of 25 organic cations and the oxidation potentials of 11 anions.This information was used to select promising cations and anions for the preparation of ionic liquids as green electrolytes for electrodeposition of active metals.The reasonable linear correlations between the lowest unoccupied molecular orbital(LUMO)energies and the reduction potentials of cations,and the linear relationships between the oxidation potentials and the highest occupied molecular orbital(HOMO)energies of anions were obtained.The orders of electrochemical stability for cations and anions being obtained agree well with the experimental measurements.The suitable ionic liquids with sufficiently wide electrochemical windows for electrodeposition of active metals are suggested to be[Emim]NTf2,[Bmim]NTf2,[Bmim]BF4, [Bmim]PF6,[Bmim]CTf3,[Emim]BF4,[Emim]PF6,[Emim]CTf3.. 展开更多
关键词 量子化学计算 液体电解质 金属离子 计算机辅助 分子设计 电活性 氧化还原电位 有机阳离子
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Molecular Design and Electronic Structure of Polynuclear Rare Earth Complexes and Clusters
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作者 徐光宪 高松 +2 位作者 黎乐民 吴瑾光 黄春辉 《Journal of Rare Earths》 SCIE EI CAS CSCD 1991年第4期241-247,共7页
Studies on the electronic structure,molecular design,syntheses of some novel series of tetranuclear rare earth complexes in our laboratory have been reviewed.Spin-unrestricted localized INDO method was used to calcula... Studies on the electronic structure,molecular design,syntheses of some novel series of tetranuclear rare earth complexes in our laboratory have been reviewed.Spin-unrestricted localized INDO method was used to calculate the electronic structure and the chemical bonding in the typical rare earth cluster Sc[Sc_6Cl_(12)Co]was discussed. 展开更多
关键词 molecular design Electronic structure Rare earths Polynuclear complexes CLUSTERS INDO
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Receptor-based Molecular Designs of DABO Derivatives as HIV-1 Non-nucleoside Reverse Transcriptase Inhibitors
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作者 闫宁 梅虎 +4 位作者 李建 孙家英 王琴 谢江安 吕娟 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2011年第3期390-400,共11页
A series of 46 dihydro-alkoxy-benzyl-oxopyrimidines (DABOs), a class of highly potent non-nucleoside reverse transcriptase inhibitors (NNRTIs), was studied by molecular docking followed by comparative molecular fi... A series of 46 dihydro-alkoxy-benzyl-oxopyrimidines (DABOs), a class of highly potent non-nucleoside reverse transcriptase inhibitors (NNRTIs), was studied by molecular docking followed by comparative molecular field analysis (CoMFA) and comparative molecular similarity index analysis (CoMSIA). The results showed that the H-bonding interactions between the C=O and NH of the pyrimidine ring and Lys101, hydrophobic interactions between R, R1, X sites of ligands and neighboring amino acid residuals, and the electrostatic interactions between ligands and His235 and Lys101 residues were the dominant factors affecting the binding affinities. Based on an optimal docking conformation, 3D-QSAR models of 46 DABO derivatives were developed. The r^2 and cross-validated r^2 (q^2) of an optimal CoMSIA model were 0.862 and 0.532, respectively. Based on the QSAR studies, 9 new compounds were designed by the method of LeapFrog. The binding energies and docking scores (GScore) of 9 new compounds were better than that of a template molecule with the highest observed activity. The results showed that the molecular designs of DABOs should be focused on the hydrophobic interactions with the bottom of the binding pocket as well as van der Waals interactions with the entrance of binding pocket. 展开更多
关键词 molecular docking COMFA COMSIA DABOs NNRTIS molecular design
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Deep-red and near-infrared organic lasers based on centrosymmetric molecules with excited-state intramolecular double proton transfer activity
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作者 Chang-Cun Yan Zong-Lu Che +2 位作者 Wan-Ying Yang Xue-Dong Wang Liang-Sheng Liao 《Opto-Electronic Advances》 SCIE EI CAS CSCD 2023年第7期19-28,共10页
Organic lasers that emit light in the deep-red and near-infrared(NIR)region are of essential importance in laser communication,night vision,bioimaging,and information-secured displays but are still challenging because... Organic lasers that emit light in the deep-red and near-infrared(NIR)region are of essential importance in laser communication,night vision,bioimaging,and information-secured displays but are still challenging because of the lack of proper gain materials.Herein,a new molecular design strategy that operates by merging two excited-state intramolecular proton transfer-active molecules into one excited-state double proton transfer(ESDPT)-active molecule was demonstrated.Based on this new strategy,three new materials were designed and synthesized with two groups of intramolecular resonance-assisted hydrogen bonds,in which the ESDPT process was proven to proceed smoothly based on theoretical calculations and experimental results of steady-state and transient spectra.Benefiting from the effective six-level system constructed by the ESDPT process,all newly designed materials showed low threshold laser emissions at approximately 720 nm when doped in PS microspheres,which in turn proved the existence of the second proton transfer process.More importantly,our well-developed NIR organic lasers showed high laser stability,which can maintain high laser intensity after 12000 pulse lasing,which is essential in practical applications.This work provides a simple and effective method for the development of NIR organic gain materials and demonstrates the ESDPT mechanism for NIR lasing. 展开更多
关键词 excited-state intramolecular proton transfer organic laser near-infrared emission molecular design
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关于我国林木育种向智能分子设计育种发展的思考 被引量:1
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作者 康向阳 《北京林业大学学报》 CAS CSCD 北大核心 2024年第3期1-7,共7页
“作物育种4.0”的提出,为我国林木遗传育种指明了向智能分子设计育种发展的前进方向。本文提出了理想品种的概念及其智能设计实现条件,简要综述了我国林木遗传育种研究历史以及存在的问题,并提出了推动我国林木智能分子设计育种的发展... “作物育种4.0”的提出,为我国林木遗传育种指明了向智能分子设计育种发展的前进方向。本文提出了理想品种的概念及其智能设计实现条件,简要综述了我国林木遗传育种研究历史以及存在的问题,并提出了推动我国林木智能分子设计育种的发展对策等。林木遗传育种应该瞄准国家林业重大需求,有组织地选择重要树种系统布局,在推动树种高世代遗传改良及其利用的同时,准备系谱关系清晰的育种资源群体,做到等位变异有迹可循;解析重要性状遗传变异规律及其调控网络,实现基因调控有据可查;建立高效的多组学大数据整合分析以及育种群体构建、亲本选配和后代选择等分子设计育种技术方法体系,保证智能育种有“法”可依等。逐步解决我国林木遗传育种中存在的问题,为实施林木智能设计育种创造理想条件。在每一育种世代品种向理想品种选育的推进过程中,尽可能将智能分子设计育种的最新理论和技术成果应用于育种实践,选育出高产、优质、高抗的当前世代理想品种,满足国家林业发展的现实需要。 展开更多
关键词 林木育种 理想品种 常规育种 智能分子设计育种 育种发展对策
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新型查尔酮衍生物抗乳腺癌活性的3D-QSAR模型构建及分子设计
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作者 陈艳 冯惠 +1 位作者 冯长君 堵锡华 《南京理工大学学报》 CAS CSCD 北大核心 2024年第2期248-252,共5页
为了获得较高抗乳腺癌活性的新型化合物,对18个新型查尔酮衍生物抗乳腺癌活性(pIC_(50))进行了三维定量构效关系(3D-QSAR)研究。其中14个化合物作为训练集用于构建3D-QSAR模型,其余化合物(含模板分子)作为测试集对所建模型进行验证。所... 为了获得较高抗乳腺癌活性的新型化合物,对18个新型查尔酮衍生物抗乳腺癌活性(pIC_(50))进行了三维定量构效关系(3D-QSAR)研究。其中14个化合物作为训练集用于构建3D-QSAR模型,其余化合物(含模板分子)作为测试集对所建模型进行验证。所建3D-QSAR模型的交叉验证系数R^(2)_(CV)为0.569,非交叉验证系数R^(2)为0.974,说明所建模型具有良好的稳定性和预测能力。该模型中立体场、静电场对pIC_(50)的贡献分别为58.8%和41.2%,表明影响该类化合物抗肿瘤活性的主要因素是取代基的疏水性、空间位阻和电荷分布。通过对模型的分析,设计了5个具有较高pIC_(50)的新化合物,有待通过后续医学实验加以验证。 展开更多
关键词 新型查尔酮衍生物 抗乳腺癌活性 三维定量构效关系 分子设计
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Remediation of Heavy Metal (Cd, Cr, Cu, Co, and Ni) Ions from Kaolinite Clay Using Molecular Micelles Chelators and D-Optimum Experimental Design
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作者 Sayo O. Fakayode Ashley M. Taylor +4 位作者 Maya McCoy Sri Lanka Owen Whitney E. Stapleton Carmen Grady David A. Pollard 《Journal of Environmental Protection》 2013年第8期789-795,共7页
This study investigated the potential utility of poly (sodium N-undecanoyl-L-leucyl-valinate) (poly-L-SULV), poly (sodium N-undecanoyl-L-leucyl-alanate) (poly-L-SULA), and poly (sodium N-undecanoyl-glycinate) (poly-SU... This study investigated the potential utility of poly (sodium N-undecanoyl-L-leucyl-valinate) (poly-L-SULV), poly (sodium N-undecanoyl-L-leucyl-alanate) (poly-L-SULA), and poly (sodium N-undecanoyl-glycinate) (poly-SUG) molecular micelles (MMs) as chelators for heavy metal (Cd, Cr, Cu, Co, and Ni) ion remediation of kaolinite clay using D-optimum experimental design. D-optimum experimental design was employed to simultaneously investigate the influence of design variables such as the buffer pH, chelator concentration, and centrifuge speed to evaluate the optimum conditions and to reduce the time and cost of metal ion remediation. The partition coefficients of the metal ion concentrations between the kaolinite clay and chelator equilibrium were also evaluated. In addition, the influence of metal ion concentrations on the remediation capability of the chelators was evaluated by conducting remediation studies at four different (10 ppm, 40 ppm, 60 ppm, and 80 ppm) metal ion concentrations. In general, the results of the remediation efficiency and partition coefficients obtained in this study are highly metal ion dependent and also dependent upon the chelator used for the remediation. Specifically, the remediation efficiency of the molecular micelles was found to be comparable to or better than the corresponding remediation efficiency obtained when SDS or EDTA was used for the remediation. However, at optimum conditions, poly-SULV and poly-L-SULA molecular micelle chelators demonstrated superior remediation efficiencies for Cr, with remediation efficiency of 99.9 ± 8.7% and 99.1 ± 0.7%, respectively. 展开更多
关键词 Heavy Metal Ion REMEDIATION molecular Micelles Chelator D-Optimum Experimental design KAOLINITE CLAY
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分子对接技术在药物设计学教学中的应用
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作者 赵宏 高琪 +5 位作者 宋琳琳 王宇亮 王丽红 沈宇 平洋 马常友 《药学教育》 2024年第2期55-59,共5页
药物设计学是一门涉及新药研究开发程序、方法手段和要求的新兴学科,涵盖多门学科知识,在新药研发类综合型人才培养的知识体系中具有重要地位。本文采用模拟实操教学法,以人参皂苷抗阿尔茨海默病为例,将计算机辅助药物设计中的分子对接... 药物设计学是一门涉及新药研究开发程序、方法手段和要求的新兴学科,涵盖多门学科知识,在新药研发类综合型人才培养的知识体系中具有重要地位。本文采用模拟实操教学法,以人参皂苷抗阿尔茨海默病为例,将计算机辅助药物设计中的分子对接技术应用于实战演练,以提升理论教学的效果,加深学生对课堂理论知识的理解,提升学生的创新思维能力和实践运用能力。 展开更多
关键词 药物设计学 分子对接技术 模拟实战式 人参皂苷 阿尔茨海默病
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