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Retaining the self-released chalcogenate at reconstructed cobalt sites by self-transformed carbonate regulation for boosted oxygen evolution
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作者 Jingxuan Zhao Zhe Xue +3 位作者 Qing Wang Xiangyang Li Shoujie Liu Xu Zhao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期46-54,I0002,共10页
The in-situ generated oxyanions at electrochemically reconstructed catalysts from metal-based nonoxide compounds have been proven to significantly accelerate oxygen evolution reaction(OER)kinetics.However,it remains a... The in-situ generated oxyanions at electrochemically reconstructed catalysts from metal-based nonoxide compounds have been proven to significantly accelerate oxygen evolution reaction(OER)kinetics.However,it remains a challenge to retain these self-released oxyanions at reconstructed catalysts,hindering its utilization as a tool to develop efficient OER catalysts.Here,we demonstrate a versatile selftransformed carbonate regulation strategy to efficiently retain the self-released chalcogenate at Co oxyhydroxides reconstructed from carbon-incorporated Co selenides under OER conditions.These selftransformed CO_(3)^(2-)can induce electron accumulation and narrow d bond at Co sites to facilitate the Co3d-O 2p orbital hybridization between Co sites and SeO_(x)^(2-)for enhanced SeO_(x)^(2-)retention,which can accelerate the rate-limiting step for^(*)OOH formation during OER.Relative to CoOOH-SeO_(x)^(2-)with limited SeO_(x)^(2-)residues,CoOOH-CO_(3)^(2-)/SeO_(x)^(2-)with elevated SeO_(x)^(2-)retention by CO_(3)^(2-)regulation exhibited a 5.6-fold increase in current density and a remarkable lower Tafel slope towards OER.This strategy paves a rational avenue to design efficient catalysts for electrooxidation reactions through finely regulating self-released oxyanions at reconstructed structures. 展开更多
关键词 Electrochemical reconstruction chalcogenate retention Carbonate regulation Orbital hybridization Oxygen evolution reaction
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Chalcogen heteroatoms doped nickel-nitrogen-carbon single-atom catalysts with asymmetric coordination for efficient electrochemical CO_(2) reduction
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作者 Jialin Wang Kaini Zhang +5 位作者 Ta Thi Thuy Ng Yiqing Wang Yuchuan Shi Daixing Wei Chung-Li Dong Shaohua Shen 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第9期54-65,共12页
The electronic configuration of central metal atoms in single-atom catalysts(SACs)is pivotal in electrochemical CO_(2) reduction reaction(eCO_(2)RR).Herein,chalcogen heteroatoms(e.g.,S,Se,and Te)were incorporated into... The electronic configuration of central metal atoms in single-atom catalysts(SACs)is pivotal in electrochemical CO_(2) reduction reaction(eCO_(2)RR).Herein,chalcogen heteroatoms(e.g.,S,Se,and Te)were incorporated into the symmetric nickel-nitrogen-carbon(Ni-N_(4)-C)configuration to obtain Ni-X-N_(3)-C(X:S,Se,and Te)SACs with asymmetric coordination presented for central Ni atoms.Among these obtained Ni-X-N_(3)-C(X:S,Se,and Te)SACs,Ni-Se-N_(3)-C exhibited superior eCO_(2)RR activity,with CO selectivity reaching~98% at-0.70 V versus reversible hydrogen electrode(RHE).The Zn-CO_(2) battery integrated with Ni-Se-N_(3)-C as cathode and Zn foil as anode achieved a peak power density of 1.82 mW cm^(-2) and maintained remarkable rechargeable stability over 20 h.In-situ spectral investigations and theoretical calculations demonstrated that the chalcogen heteroatoms doped into the Ni-N_(4)-C configuration would break coordination symmetry and trigger charge redistribution,and then regulate the intermediate behaviors and thermodynamic reaction pathways for eCO_(2)RR.Especially,for Ni-Se-N_(3)-C,the introduced Se atoms could significantly raise the d-band center of central Ni atoms and thus remarkably lower the energy barrier for the rate-determining step of ^(*)COOH formation,contributing to the promising eCO_(2)RR performance for high selectivity CO production by competing with hydrogen evolution reaction. 展开更多
关键词 Electrochemical CO_(2) reduction reaction chalcogen heteroatoms Single-atom catalysts Asymmetric coordination CO production
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Methane oxidative carbonylation catalyzed by rhodium chalcogen halides over carbon supports 被引量:1
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作者 G.R.Kosmambetoval P.E.Strizhak +4 位作者 V.I.Gritsenko S.V.Volkov L.B.Kharkova O.G.Yanko O.M.Korduban 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2008年第1期1-7,共7页
Gas phase carbonylation of methane is studied in the presence of molecular oxygen over pure carbon carriers and carbon supported rhodium chalcogen halides. Activated carbons and fullerene blacks have been used as carb... Gas phase carbonylation of methane is studied in the presence of molecular oxygen over pure carbon carriers and carbon supported rhodium chalcogen halides. Activated carbons and fullerene blacks have been used as carbon supports. XPS and IR-spectroscopy data show the formation of rhodium chalcogen halides in solids prepared by different methods. We have found that the productivity of acetic acid by carbon supported rhodium chalcogen halides depends strongly on the carbon carrier and the method of the catalyst preparation. Namely, the catalyst with highest productivity for the acetic acid is prepared by synthesizing the rhodium chalcogen halide over the carbon support followed by thermal destruction. We have also found that rhodium chalcogen halides over activated carbons are more active compared with fullerene supported catalysts. 展开更多
关键词 CATALYSTS methane oxidative carbonylation rhodium chalcogen halides carbon supports
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Recent advances in cobalt-, nickel-, and iron-based chalcogen compounds as counter electrodes in dye-sensitized solar cells 被引量:1
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作者 Pengwei Wei Xue Chen +6 位作者 Guizhu Wu Jing Li Yang Yang Zeiwei Hao Xiao Zhang Jing Li Lu Liu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第9期1282-1297,共16页
The electroactive materials used in the counter electrode(CE)are of great concern as they influence the photovoltaic performances of dye-sensitized solar cells.The main functions of CE materials are collecting electro... The electroactive materials used in the counter electrode(CE)are of great concern as they influence the photovoltaic performances of dye-sensitized solar cells.The main functions of CE materials are collecting electrons from the external circuit and transferring them to the electrolyte and realizing the catalytic reduction of the redox species(I3^– or Co^3+)present in the electrolyte.The research hotspot of CE materials is seeking functional materials that display high efficiency,low cost,and good electrochemical stability and can substitute the benchmark platinum electrode.Chalcogen compounds of cobalt,nickel,and iron have been widely applied as CE materials and exhibit excellent electrocatalytic performances owing to their unique electrical properties,similar energies of adsorption of I atoms as platinum,excellent catalytic activities,and good chemical stabilities.In this review,we trace the developments and performances of chalcogen compounds of iron,cobalt,and nickel as CE materials and present the latest research directions for improving the electrocatalytic performances.We then highlight the optimization strategies for further improving their performances,such as fabrication of architectures,regulation of the components,synthesis of composites containing carbon materials,and elemental doping. 展开更多
关键词 Counter electrode Dye-sensitized solar cell chalcogen compound COBALT NICKEL Iron
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Physical properties of ternary thallium chalcogenes Tl2MQ3(M = Zr, Hf; Q = S, Se, Te) via ab-initio calculations
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作者 Engin Ateser Oguzhan Okvuran +2 位作者 Yasemin Oztekin Ciftci Haci Ozisik Engin Deligoz 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第10期462-472,共11页
We have reported a first principles study of structural, mechanical, electronic, and thermoelectric properties of the monoclinic ternary thallium chalcogenes Tl2MQ3(M = Zr, Hf;Q = S, Se, Te). The electronic band struc... We have reported a first principles study of structural, mechanical, electronic, and thermoelectric properties of the monoclinic ternary thallium chalcogenes Tl2MQ3(M = Zr, Hf;Q = S, Se, Te). The electronic band structure calculations confirm that all compounds exhibit semiconductor character. Especially, Tl2ZrTe3 and Tl2HfTe3 can be good candidates for thermoelectric materials, having narrow band gaps of 0.169 eV and 0.21 eV, respectively. All of the compounds are soft and brittle according to the second-order elastic constant calculations. Low Debye temperatures also support the softness. We have obtained the transport properties of the compounds by using rigid band and constant relaxation time approximations in the context of Boltzmann transport theory. The results show that the compounds could be considered for room temperature thermoelectric applications(ZT ~ 0.9). 展开更多
关键词 electronic band structure THERMOELECTRIC properties FIGURE of MERIT TERNARY THALLIUM chalcogenS
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Catalytic perfomance of rhodium chalcogen halides and rhodium chalcogenides over silica supports in methane oxidative carbonylation
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作者 S. V. Volkov G. R. Kosmambetova +4 位作者 L. B. Kharkova O. V. Shvets O. G. Yanko V. I. Gritsenko P. E. Strizhak 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2009年第4期399-406,共8页
The gas phase methane oxidative carbonylation was studied in the presence of molecular oxygen over silica materials including their mechanical mixtures with rhodium chalcogen chlorides obtained in non-aqueous inorgani... The gas phase methane oxidative carbonylation was studied in the presence of molecular oxygen over silica materials including their mechanical mixtures with rhodium chalcogen chlorides obtained in non-aqueous inorganic media. The formation of Rh4SCl7, Rh4S9Cl2, Rh4SesCl3 and Rh3Se3Cl solids was confirmed by elemental analysis, IR absorption spectroscopy, XPS and X-ray diffraction. Silica, vanadium-, and molybdenum-containing mesoporous molecular sieves have been used as supports. It was found that productivity of oxygenates (methanol, methyl acetate and acetic acid) depends mainly on the method of the catalyst preparation and the type of the support. 展开更多
关键词 catalysts rhodium chalcogen halides methane oxidative carbonylation silica supports
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Electron-rich Polynuclear Transition Metal Clusters:Ⅰ.The Clusters with Chalcogen Bridges and Phosphine Ligands
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作者 洪茂春 江飞龙 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 1994年第2期117-130,共14页
This paper presents a versatile method for synthesizing electron-rich polynuclear transition metal clusters with chalcogen bridges and phosphine ligands.The reactions of transition metal complexes(R3P)2MX2(M=Co,Ni;R=P... This paper presents a versatile method for synthesizing electron-rich polynuclear transition metal clusters with chalcogen bridges and phosphine ligands.The reactions of transition metal complexes(R3P)2MX2(M=Co,Ni;R=Ph,Bu,Et;X=Cl,Br) with bridging reagents Na2Ex (E=S,Se;x=1.2) are described.The geometric and electronic structures of a series of polynuclear transition metal clusters with trianglar M3 units are also discussed. 展开更多
关键词 polynuclear transition metal clusters chalcogen bridges triangular M_3 unit synergistic effect
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Chalcogen Bonds in Small-Organic Molecule Compounds Derived from the Cambridge Structural Database (CSD)
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作者 Albert S. Lundemba Dikima D. Bibelayi +4 位作者 Philippe V. Tsalu Peter A. Wood Jason Cole Jean S. Kayembe Zephirin G. Yav 《Crystal Structure Theory and Applications》 2021年第4期57-69,共13页
Growing interest in non-covalent interactions involving chalcogen atoms has been ascribed to their importance in crystal engineering, molecular recognition and macromolecular edifices. The present study is dealing wit... Growing interest in non-covalent interactions involving chalcogen atoms has been ascribed to their importance in crystal engineering, molecular recognition and macromolecular edifices. The present study is dealing with chalcogen bonds involving divalent Sulphur, Selenium and Tellurium atoms, acting as sigma-hole donors, in small-molecule compounds using the Cambridge Structural Database (CSD) in conjunction with ab initio calculations. Results derived from CSD surveys and computational study revealed that nucleophiles formed complexes with the chalcogen-bond donors R1-X-R2 (X = S, Se or Te). The main forces stabilizing the complexes were chalcogen bonds, enhanced by dispersion interactions. Complexation pattern and energetics show that nucleophile bonding at divalent S, Se and Te atoms is a relatively strong and directed interaction. The bond consists of a charge transfer from a nucleophile atom lone pair to an X-R1 or X-R2 antibonding orbital. 展开更多
关键词 chalcogen Bond CSD Ab Initio Calculation Interaction Geometry Interaction Energy
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Perturbation of autophagy pathways in murine alveolar macrophage by 2D TMDCs is chalcogen-dependent
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作者 Xiaofei Zhou Weitao Jin +3 位作者 Rui Zhang Xuan Mao Jianbo Jia Hongyu Zhou 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2024年第1期97-107,共11页
Increasing risks of incidental and occupational exposures to two-dimensional transition metal dichalcogenides(2D TMDCs)due to their broad application in various areas raised their public health concerns.While the comp... Increasing risks of incidental and occupational exposures to two-dimensional transition metal dichalcogenides(2D TMDCs)due to their broad application in various areas raised their public health concerns.While the composition-dependent cytotoxicity of 2D TMDCs has been well-recognized,how the outer chalcogenide atoms and inner transition metal atoms differentially contribute to their perturbation on cell homeostasis at non-lethal doses remains to be identified.In the present work,we compared the autophagy induction and related mechanisms in response to WS_(2),NbS_(2),WSe_(2)and Nb Se_(2)nanosheets exposures in MH-S murine alveolar macrophages.All these 2D TMDCs had comparable physicochemical properties,overall cytotoxicity and capability in triggering autophagy in MH-S cells,but showed outer chalcogen-dependent subcellular localization and activation of autophagy pathways.Specifically,WS_(2)and NbS_(2)nanosheets adhered on the cell surface and internalized in the lysosomes,and triggered m TOR-dependent activation of autophagy.Meanwhile,WSe_(2)and Nb Se_(2)nanosheets had extensive distribution in cytoplasm of MH-S cells and induced autophagy in an m TOR-independent manner.Furthermore,the 2D TMDCs-induced perturbation on autophagy aggravated the cytotoxicity of respirable benzo[a]pyrene.These findings provide a deeper insight into the potential health risk of environmental 2D TMDCs from the perspective of homeostasis perturbation. 展开更多
关键词 chalcogen group Autophagy pathway Cell function Endosomal escape Inhalation toxicity
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Chalcogenoviologen Enhanced Host–Guest Recognition
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作者 Yuanning Feng Xingang Zhao +14 位作者 Daniel A.Appleton Han Han Ryan M.Young Wenqi Liu Christopher K.Lee Weixingyue Li Bai-Tong Liu Yong Wu Chun Tang Aspen X-Y.Chen Charlotte L.Stern Dong Jun Kim Michael R.Wasielewski Yunyan Qiu J.Fraser Stoddart 《CCS Chemistry》 CSCD 2024年第11期2679-2691,共13页
In the field of supramolecular chemistry,cyclophanes with novel properties are highly sought after since they can be tailored to fulfill specific tasks.In this article,we incorporate chalcogenoviologen-based units int... In the field of supramolecular chemistry,cyclophanes with novel properties are highly sought after since they can be tailored to fulfill specific tasks.In this article,we incorporate chalcogenoviologen-based units into tetracationic cyclophanes,resulting in enhanced host–guest recognition.The cyclophanes can be tuned through the addition of chalcogen bridging atoms—S,Se,and Te—which enhance their rigidity,regulate bond rotation and introduce additional steric bulk.Three cyclophanes containing chalcogen bridging atoms were synthesized and characterized in both the solution and solid states.The energy barriers for their interconversion between syn-and anti-conformations in solution were found to be correlated with chalcogen atom size.The photophysical properties of the cyclophanes are strongly dependent on the chalcogen atomic number,with intersystem crossing rates increasing from S to Se to Te.UV–vis-NIR spectroscopic and fluorometric titrations revealed that the chalcogenoviologenbased cyclophanes exhibit significantly stronger binding with electron-rich guests compared to the well-known,unsubstituted cyclobis(paraquat-pphenylene).This enhancement in binding can be attributed to restricted rotation within the chalcogenoviologen units.This research provides insight into the rational design and tailored synthesis of cationic cyclophanes. 展开更多
关键词 binding titrations chalcogenS host–guest systems molecular recognition supramolecular chemistry
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Chalcogen cathode and its conversion electrochemistry in rechargeable Li/Na batteries 被引量:4
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作者 Ya-Hui Wang Xue-Ting Li +3 位作者 Wen-Peng Wang Hui-Juan Yan Sen Xin Yu-Guo Guo 《Science China Chemistry》 SCIE EI CAS CSCD 2020年第10期1402-1415,共14页
Chalcogen elements,such as sulfur(S),selenium(Se),tellurium(Te)and the interchalcogen compounds,have been studied extensively as cathode materials for the next-generation rechargeable lithium/sodium(Li/Na)batteries.Th... Chalcogen elements,such as sulfur(S),selenium(Se),tellurium(Te)and the interchalcogen compounds,have been studied extensively as cathode materials for the next-generation rechargeable lithium/sodium(Li/Na)batteries.The high energy output of the Li/Na-chalcogen battery originates from the two-electron conversion reaction between chalcogen cathode and alkali metal anode,through which both electrodes are able to deliver high theoretical capacities.The reaction also leads to parasitic reactions that deteriorate the chemical environment in the battery,and different cathode-anode combinations show their own features.In this article,we intend to discuss the fundamental conversion electrochemistry between chalcogen elements and alkali metals and its potential influence,either positive or negative,on the performance of batteries.The strategies to improve the conversion electrochemistry of chalcogen cathode are also reviewed to offer insights into the reasonable design of rechargeable Li/Nachalcogen batteries. 展开更多
关键词 energy storage Li/Na-chalcogen battery chalcogen cathode conversion reaction
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A highly active and selective chalcogen bond-mediated perchlorate channel
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作者 Lin Yuan Peng Jiang +4 位作者 Jingliang Hu Huan Zeng Yanping Huo Zhongyan Li Huaqiang Zeng 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第4期2026-2030,共5页
Artificial membrane transporters that either use chalcogen bonds to facilitate transmembrane flux of anions or show high selectivity toward perchlorate anions are rare.In this work,we report on one such novel monopept... Artificial membrane transporters that either use chalcogen bonds to facilitate transmembrane flux of anions or show high selectivity toward perchlorate anions are rare.In this work,we report on one such novel monopeptide-based transporter system,featuring both chalcogen bonds for highly efficient anion transport and high transport selectivity toward ClO_(4)^(-) anions.Structurally,these monopeptide molecules associate with each other via H-bonds to produce H-bonded 1D stack that not only one dimensionally but also directionally aligns the terminal bicyclic thiophene motifs to the same side.Functionally,these well-aligned thiophenes create a sulfur-rich transmembrane pathway,combinatorially fine-tunable to enable anions to efficiently cross the membrane in the increasing activity of Cl^(-)<Br^(-)<NO_(3)^(-)<ClO_(4)^(-) via chalcogen bonds,with EC_(50)values of 0.75,0.40,0.37 and 0.093μmol/L(0.3 mol%relative to lipid molecules),respectively. 展开更多
关键词 Synthetic anion channel chalcogen bonds Monopeptide THIOPHENE PERCHLORATE
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What Defines a Crystal Structure? Effects of Chalcogen Atoms in 3,7-Bis(methylchalcogeno)benzo[1,2-b:4,5-b′]dichalcogenophene-Based Organic Semiconductors
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作者 Kazuo Takimiya Kirill Bulgarevich +3 位作者 Kamon Sahara Kiseki Kanazawa Hiroyuki Takenaka Kohsuke Kawabata 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2022年第21期2546-2558,共13页
To understand the effects of chalcogen atoms on the crystal structure of the series of 3,7-bis(methylchalcogeno)benzo[1,2-b:4,5-b′]dichalcogenophene-based organic semiconductors,three benzodifuran derivatives(1—3)an... To understand the effects of chalcogen atoms on the crystal structure of the series of 3,7-bis(methylchalcogeno)benzo[1,2-b:4,5-b′]dichalcogenophene-based organic semiconductors,three benzodifuran derivatives(1—3)and dimethoxy derivatives of benzodithiophene and benzodiselenophene(4 and 7)were newly synthesized to complete the“3×3 matrix”of the oxygen-,sulfur-,and selenium-derivatives(1—9).The crystal structures of 1—9 were classified into four classes,sandwich pitchedπ-stack(1),dimeric(2 and 3),pitchedπ-stack(4,5,7,8,9),and brickwork structure(6 and 9).The causes for the different crystal structures depending on the chalcogen atoms were investigated by the theoretical calculations,indicating that the chalcogen atoms in the core and substituents primarily affected the packing structures.Although the crystal growth in the vapor phase afforded different polymorphs,the relationship between the crystal structure and the carrier transport property was carefully investigated. 展开更多
关键词 Organic semiconductor Crystal structure Mobility Intermolecular interaction chalcogen atom
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Chalcogen Effect of Atom Substitution on the Properties of Tris(2,4,6-trichlorophenyl)methyl(TTM)Radical
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作者 YANG Yiming QIU Lili SHI Xueliang 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2023年第2期197-201,共5页
Luminescent open-shell organic radicals have recently been regarded as one of the most potential materials in organic light-emitting diodes(OLEDs).Herein,we have synthesized two new organic radicals,namely tris{4-[4-(... Luminescent open-shell organic radicals have recently been regarded as one of the most potential materials in organic light-emitting diodes(OLEDs).Herein,we have synthesized two new organic radicals,namely tris{4-[4-(tert-butyl)phenoxy]-2,6-dichlorophenyl}methane radical(TTM-O)and tris(4-{[4-(tert-butyl)-phenyl]thio}-2,6-dichlorophenyl)methane radical(TTM-S),by the substitution of chalcogen atom elements at the para position of conventional tris(2,4,6-trichlorophenyl)methyl(TTM)radical moiety.Interestingly,both TTM-O and TTM-S exhibited significantly enhanced photostability compared with the unsubstituted TTM radical parent.Moreover,the chalcogen atom also had a crucial impact on the photoluminescence quantum yield(PLQY)of the radicals,i.e.,the PLQY of TTM-S was greatly enhanced compared to TTM radical while TTM-O was nearly non-emissive.Particularly,TTM-S showed intense PLQY of 37.54%and 185-fold longer photostability than that in cyclohexane solution of TTM. 展开更多
关键词 Luminescent organic radical chalcogen atom effect Photoluminescence quantum yield(PLQY)
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Air Stable Chalcogen-Doped Rubicenes with Diradical Character
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作者 Liangzhuo Ma Song Wang +9 位作者 Yuan Li Qinqin Shi Wenbin Xie Hao Chen Xin Wang Weiya Zhu Lang Jiang Runfeng Chen Qian Peng Hui Huang 《CCS Chemistry》 CAS 2022年第12期3669-3676,共8页
Air stable diradicaloid polycyclic aromatic hydrocarbon(PAH)materials possess unique electronic and magnetic properties for various applications.In general,long conjugated distances between two radical centers are req... Air stable diradicaloid polycyclic aromatic hydrocarbon(PAH)materials possess unique electronic and magnetic properties for various applications.In general,long conjugated distances between two radical centers are required to improve the air stability,thereby complicating the synthetic procedures.Herein,the chalcogen containing rubicenes(O-,S-,and Se-rubicenes)were systematically investigated to understand the chalcogen effects on chalcogen-rubicene physicochemical properties.Impressively,these rubicenes presented unprecedented diradical characterwithin one simple benzene ring and excellent air stabilities.Theirdiradicalcharacterweremanifested by single-crystal X-ray studies,variable-temperature nuclear magnetic resonance,and electron spin resonance.Furthermore,the nucleus independent chemical shifts andthe anisotropy of the induced currentdensity calculations revealed that the formation of diradical was caused by a pro-aromaticity driving force.Importantly,the diradical character of rubicenes are visualizedbyFractionalOccupationNumberWeighted Electron Density(FOD)plots,which present high NFOD values from 1.651 to 1.830.This contribution provided distinctive insights into the structure and property relationship of PAH diradicals. 展开更多
关键词 rubicene diradical character air stable pro-aromaticity chalcogen
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无定形硫属单质分子结构的研究进展
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作者 时五一 鲍雨 崔树勋 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2024年第6期1-14,共14页
硫属单质(硫、硒、碲)是自然界中一类十分重要的物质,在光电材料、电池及半导体等领域有着广泛的应用.硫属单质均具有晶态和无定形态两种结构形态,其中晶态硫属单质的分子结构已经得到了深入的研究,但无定形硫属单质的分子结构研究还处... 硫属单质(硫、硒、碲)是自然界中一类十分重要的物质,在光电材料、电池及半导体等领域有着广泛的应用.硫属单质均具有晶态和无定形态两种结构形态,其中晶态硫属单质的分子结构已经得到了深入的研究,但无定形硫属单质的分子结构研究还处于初级阶段.为了更好地发掘无定形硫属单质的应用潜力,对其结构与性质进行深入研究十分必要.本文概述了无定形硫属单质分子结构研究方面的最新进展,并展望了未来可能的研究方向.这些工作将有助于更全面地了解无定形硫属单质的性质,并推动其在不同领域中的应用. 展开更多
关键词 硫属单质 无定形态
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氧族元素间共价单键参与的无机反应机理 被引量:2
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作者 马明哲 曹若辰 +2 位作者 武江波 徐佳宇 卞江 《大学化学》 CAS 2017年第10期75-83,共9页
结合一些热力学数据和动力学过程,运用亲电和亲核的概念,初步阐释了一些O―O键、S―S键参与的氧化还原反应的机理,并利用Gaussian09程序的计算对一些已有的机理和猜想进行了验证,以此说明无机反应机理的一些规律。
关键词 无机反应机理 氧族元素 Ch―Ch键(Ch是chalcogen(氧族元素)的缩写) 氧化还原反应
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攀西钒钛磁铁矿硫族元素工艺矿物学研究 被引量:8
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作者 李潇雨 周满赓 +1 位作者 王婧 王越 《中国矿业》 北大核心 2016年第1期118-124,134,共8页
对攀西钒钛磁铁矿攀枝花、白马、红格、太和4大矿区和选厂的矿样进行了详细的工艺矿物研究,查明了硫族元素在矿石中的赋存状态和分布规律。钴、镍、铜等可综合利用的黄铜矿、镍黄铁矿、方钴矿等矿物平均粒度小于0.074mm,嵌布粒度微细,... 对攀西钒钛磁铁矿攀枝花、白马、红格、太和4大矿区和选厂的矿样进行了详细的工艺矿物研究,查明了硫族元素在矿石中的赋存状态和分布规律。钴、镍、铜等可综合利用的黄铜矿、镍黄铁矿、方钴矿等矿物平均粒度小于0.074mm,嵌布粒度微细,但与磁黄铁矿和黄铁矿关系密切,大部分赋存于磁黄铁矿和黄铁矿等矿物中,与钛磁铁矿紧密镶嵌的黄铁矿次之,仅少部份以微细矿物的形式赋存于铁相和硅酸盐相矿物中;在选矿过程中进入铁精矿的硫化物也以磁黄铁矿为主。结合硫族元素的利用现状和对矿石中硫族元素的工艺矿物学研究资料,认为在目前的选矿工艺中,以磁黄铁矿和黄铁矿为选别目标,进一步提高以硫精矿为载体的钴、镍、铜元素的精矿品位和回收率,形成可利用含钴镍铜较高品位的硫精矿是可能的,也是符合生产实际的。 展开更多
关键词 攀西钒钛磁铁矿 硫族元素 赋存状态 综合利用
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环戊二烯类有机金属含硫族化学的新进展 被引量:6
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作者 金国新 孔庆安 《化学进展》 SCIE CAS CSCD 1998年第1期16-32,共17页
本文系统地综述了环戊二烯类有机过渡金属含硫族(S,Se,Te)化学领域的研究现状和进展。参考文献136篇。
关键词 有机金属化学 硫族化学 环戊二烯类 含硫化合物
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有机希土金属含硫族化合物的研究进展 被引量:3
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作者 程延祥 金国新 《无机化学学报》 SCIE CAS CSCD 北大核心 1999年第1期8-18,共11页
本文概述了有机希土(Sc、Y、La-Lu)含硫族元素(S、Se、Te)配位化合物的化学进展,从这类化合物的合成方法、结构特征进行了总结。
关键词 硫族 稀土 配合物 有机稀土
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