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The Role of Biosynthesized Metallic and Metal Oxide Nanoparticles in Combating Anti-Microbial Drug Resilient Pathogens
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作者 Gemechis Waktole Bayissa Chala 《Journal of Biomaterials and Nanobiotechnology》 CAS 2023年第1期1-22,共22页
Because of their high efficiency, antibiotics have long been the primary treatment for infections, but the rise of drug-resistant pathogens has become a therapeutic concern. Nanoparticles, as novel biomaterials, are c... Because of their high efficiency, antibiotics have long been the primary treatment for infections, but the rise of drug-resistant pathogens has become a therapeutic concern. Nanoparticles, as novel biomaterials, are currently gaining global attention to combat them. Drug-resistant diseases may need the use of nanoparticles as a viable therapeutic option. By altering target locations and enzymes, decreasing cell permeability, inactivating enzymes, and increasing efflux by overexpressing efflux pumps, they can bypass conventional resistance mechanisms. Therefore, understanding how metal and metal oxide nanoparticles affect microorganisms that are resistant to antimicrobial drugs is the main objective of this review. Accordingly, the uses of metal and metal oxide nanoparticles in the fight against drug-resistant diseases appear promising. However, their mechanism of action, dose, and possible long-term effects require special attention and future research. Furthermore, repeated use of silver nanoparticles may cause gram-negative microorganisms to acquire resistance, necessitating additional study. 展开更多
关键词 NANOPARTICLE Drug Resistance metal oxide metalS PATHOGENS
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The catalytic activity of transition metal oxide nanoparticles on thermal decomposition of ammonium perchlorate 被引量:6
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作者 Jalpa A. Vara Pragnesh N. Dave Shalini Chaturvedi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2019年第4期629-635,共7页
The catalytic proficiency of three MONs for AP thermal decomposition was studied in this work.A chemical co-precipitation method was used for synthesis of MONs(CuZnO,CoZnO,and NiZnO)and their characterization carried ... The catalytic proficiency of three MONs for AP thermal decomposition was studied in this work.A chemical co-precipitation method was used for synthesis of MONs(CuZnO,CoZnO,and NiZnO)and their characterization carried out by utilizing XRD,FTIR,and SEM.The TGA/DSC technique was employed for the investigation of the catalytic proficiency of MONs on the AP.The DSC data were used for measuring activation energy of catalyzed AP by using Ozawa,Kissinger,and Starink method.The MONs were much sensitive for AP decomposition,and the performance of AP decomposition was further improved.Among all the MONs,the CuZnO exhibits higher catalytic action than others and decomposition temperature of AP is descending around 117℃ by CuZnO.The reduction in the activation energy was noticed after the incorporation of MONs in AP. 展开更多
关键词 metal oxide nanoparticles(MONs) AMMONIUM perchlorate(AP) CATALYTIC activity Activation energy
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Finned Zn-MFI zeolite encapsulated noble metal nanoparticle catalysts for the oxidative dehydrogenation of propane with carbon dioxide
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作者 En-Hui Yuan Yiming Niu +7 位作者 Xing Huang Meng Li Jun Bao Yong-Hong Song Bingsen Zhang Zhao-Tie Liu Marc-Georg Willinger Zhong-Wen Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第5期479-491,I0011,共14页
Oxidative dehydrogenation of propane with carbon dioxide(CO_(2)-ODP)characterizes the tandem dehydrogenation of propane to propylene with the reduction of the greenhouse gas of CO_(2)to valuable CO.However,the existin... Oxidative dehydrogenation of propane with carbon dioxide(CO_(2)-ODP)characterizes the tandem dehydrogenation of propane to propylene with the reduction of the greenhouse gas of CO_(2)to valuable CO.However,the existing catalyst is limited due to the poor activity and stability,which hinders its industrialization.Herein,we design the finned Zn-MFI zeolite encapsulated noble metal nanoparticles(NPs)as bifunctional catalysts(NPs@Zn-MFI)for CO_(2)-ODP.Characterization results reveal that the Zn2+species are coordinated with the MFI zeolite matrix as isolated cations and the NPs of Pt,Rh,or Rh Pt are highly dispersed in the zeolite crystals.The isolated Zn2+cations are very effective for activating the propane and the small NPs are favorable for activating the CO_(2),which synergistically promote the selective transformation of propane and CO_(2)to propylene and CO.As a result,the optimal 0.25%Rh0.50%Pt@Zn-MFI catalyst shows the best propylene yield,satisfactory CO_(2)conversion,and long-term stability.Moreover,considering the tunable synergetic effects between the isolated cations and NPs,the developed approach offers a general guideline to design more efficient CO_(2)-ODP catalysts,which is validated by the improved performance of the bifunctional catalysts via simply substituting Sn4+cations for Zn2+cations in the MFI zeolite matrix. 展开更多
关键词 Oxidative dehydrogenation PROPANE Carbon dioxide Finned Zn-MFI zeolite Encapsulated noble metal nanoparticles
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Highly Dispersed Pd Nanoparticles Supported on Zr-Doped MgAl Mixed Metal Oxides for 2-Ethylanthraquinone Hydrogenation 被引量:1
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作者 Yunhao Wang Kaige Gao +3 位作者 Chenliang Ye Ang Li Cuili Guo Jinli Zhang 《Transactions of Tianjin University》 EI CAS 2019年第6期576-585,共10页
In this study,Pd-Mg(Al)-LDH/γ-Al2O3 and Pd-Mg(Al)Zr-LDH/γ-Al2O3 precursors were synthesized by impregnating Na2PdCl4 on Mg(Al)-LDH/γ-Al2O3 and Mg(Al)Zr-LDH/γ-Al2O3,and then the precursors were calcinated and reduc... In this study,Pd-Mg(Al)-LDH/γ-Al2O3 and Pd-Mg(Al)Zr-LDH/γ-Al2O3 precursors were synthesized by impregnating Na2PdCl4 on Mg(Al)-LDH/γ-Al2O3 and Mg(Al)Zr-LDH/γ-Al2O3,and then the precursors were calcinated and reduced to obtain Pd-Mg(Al)-MMO/γ-Al2O3 and Pd-Mg(Al)Zr-MMO/γ-Al2O3 catalysts.Compared with Pd/γ-Al2O3 catalyst,the hydrogenation efficiency of Pd-Mg(Al)-MMO/γ-Al2O3 and Pd-Mg(Al)Zr-MMO/γ-Al2O3 increased by 15.7%and 24.0%,respectively.Moreover,the stability of Pd-Mg(Al)Zr-MMO/γ-Al2O3 catalyst was also higher than that of Pd/γ-Al2O3.After four runs,the hydrogenation efficiency of Pd/γ-Al2O3 decreased from 12.1 to 10.0 g/L,while that of Pd-Mg(Al)Zr-MMO/γ-Al2O3 decreased from 15.0 to 14.3 g/L.The active aquinones selectivities of all catalysts were almost 99%.The structures of the catalysts were characterized by X-ray diffraction(XRD),scanning electron microscopy(SEM),N2 adsorption–desorption,inductively coupled plasma-atomic emission spectrometry(ICP-AES),CO chemisorption analysis,transmission electron microscopy(TEM),temperature-programmed reduction with hydrogen(H2-TPR),and X-ray photoelectron spectroscopy(XPS).The results indicate that the improved catalytic performance is attributed to the stronger interaction between Pd and Mg(Al)Zr-MMO/γ-Al2O3,smaller Pd particle size and higher Pd dispersion.This work develops an effective method to synthesize highly dispersed Pd nanoparticles based on the layered double hydroxides(LDHs)precursor. 展开更多
关键词 LDHS precursor Mixed metal oxideS Pd nanoparticles 2-ETHYLANTHRAQUINONE HYDROGENATION Hydrogen PERoxide
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Metal–Oleate Complex?Derived Bimetallic Oxides Nanoparticles Encapsulated in 3D Graphene Networks as Anodes for Efficient Lithium Storage with Pseudocapacitance 被引量:1
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作者 Yingying Cao Kaiming Geng +6 位作者 Hongbo Geng Huixiang Ang Jie Pei Yayuan Liu Xueqin Cao Junwei Zheng Hongwei Gu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2019年第1期250-263,共14页
In this manuscript, we have demonstrated the delicate design and synthesis of bimetallic oxides nanoparticles derived from metal–oleate complex embedded in 3D graphene networks(MnO/CoMn_2O_4  GN), as an anode mater... In this manuscript, we have demonstrated the delicate design and synthesis of bimetallic oxides nanoparticles derived from metal–oleate complex embedded in 3D graphene networks(MnO/CoMn_2O_4  GN), as an anode material for lithium ion batteries. The novel synthesis of the MnO/CoMn_2O_4  GN consists of thermal decomposition of metal–oleate complex containing cobalt and manganese metals and oleate ligand, forming bimetallic oxides nanoparticles, followed by a selfassembly route with reduced graphene oxides. The MnO/CoMn_2O_4  GN composite, with a unique architecture of bimetallic oxides nanoparticles encapsulated in 3D graphene networks, rationally integrates several benefits including shortening the di usion path of Li^+ ions, improving electrical conductivity and mitigating volume variation during cycling. Studies show that the electrochemical reaction processes of MnO/Co Mn_2O_4  GN electrodes are dominated by the pseudocapacitive behavior, leading to fast Li^+ charge/discharge reactions. As a result, the MnO/CoMn_2O_4  GN manifests high initial specific capacity, stable cycling performance, and excellent rate capability. 展开更多
关键词 metal–oleate complex Bimetallic oxides nanoparticles Porous architecture 3D GRAPHENE NETWORKS Lithium ion batteries
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Phytogenic Synthesis of Metal/Metal Oxide Nanoparticles for Degradation of Dyes
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作者 Arpita Roy H.CAnanda Murthy +2 位作者 Hiwa M.Ahmed Mohammad Nazmul Islam Ram Prasad 《Journal of Renewable Materials》 SCIE EI 2022年第7期1911-1930,共20页
Now-a-days nanotechnology is one of the booming fields for the researchers.With the increase in industrialization mainly textile,paper,medicine,plastic industry,there is an increase in concentration of organic dyes as... Now-a-days nanotechnology is one of the booming fields for the researchers.With the increase in industrialization mainly textile,paper,medicine,plastic industry,there is an increase in concentration of organic dyes as pollutant.Release of harmful dyes in water bodies has become a serious issue,as most of the dyes are carcinogenic and mutagenic in nature and causes various diseases.Therefore,there is a requirement to find out new approaches for efficient treatment of effluent containing dyes.Nanoparticles are one of the potential solutions to this problem.They can be synthesized from different methods,however synthesis of nanoparticles from different plant parts(leaf,root or stem extract)is economical as well as ecofriendly.Phytogenic nanoparticles have various environmental applications and one of them is remediation of dyes.The aim of this review is to provide an overview of last five years studies about catalytic and photocatalytic degradation of various harmful dyes by plant synthesized nanoparticles,mechanism of degradation and advantages and disadvantages of phytogenic synthesis. 展开更多
关键词 nanoparticles green synthesis PLANTS DYES remediation metal oxide
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Effects of Metal Oxide Modifications on Photoelectrochemical Properties of Mesoporous TiO2 Nanoparticles Electrodes for Dye-Sensitized Solar Cells
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作者 Tian-you Peng Ke Fan +2 位作者 De Zhao Li-juan Yu Ren-jie Li 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2012年第5期609-616,I0004,共9页
Mesoporous TiO2 (m-TiO2) nanoparticles were used to prepare the porous film electrodes for dye-sensitized solar cells, and a second metal oxide (MgO, ZnO, A1203, or NiO) modifi- cation was carried out by dipping t... Mesoporous TiO2 (m-TiO2) nanoparticles were used to prepare the porous film electrodes for dye-sensitized solar cells, and a second metal oxide (MgO, ZnO, A1203, or NiO) modifi- cation was carried out by dipping the m-TiO2 electrode into their respective nitrate solution followed by annealing at 500 ℃. Experimental results indicated that the above second metal oxide modifications on m-TiO2 electrode are shown in all cases to act as barrier layer for the interracial charge transfer processes, but film electron transport and interfacial charge recombination characteristics under applied bias voltage were dependent significantly on the existing states and kinds of these second metal oxides. Those changes based on sec- ond metal oxide modifications showed good correlation with the current-voltage analyses of dye-sensitized solar cell, and all modifications were found to increase the open-circuit photo- voltage in various degrees, while the MgO, ZnO, and NiO modifications result in 23%, 13%, and 6% improvement in cell conversion efficiency, respectively. The above observations indi- cate that controlling the charge transport and recombination is very important to improve the photovoltaic performance of TiO2-based solar cell. 展开更多
关键词 Dye-sensitized solar cell metal oxide modification Photoelectrochemical prop-erty Mesoporous TiO2 nanoparticle
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Impact of metal oxide nanoparticles on cotton(Gossypium hirsutum L.):a physiological perspective
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作者 SINGH BRAR Ravinderdeep KUMAR Avneesh +3 位作者 KAUR Simranjeet SAHA Sandip KUMAR Anuj KUMAR Sandeep 《Journal of Cotton Research》 2021年第2期169-187,共19页
Cotton production substantiated a crucial part in the escalating economic development of many countries.To realize the increasing global demand for cotton,the emphasis should be laid on to improve cotton fiber growth ... Cotton production substantiated a crucial part in the escalating economic development of many countries.To realize the increasing global demand for cotton,the emphasis should be laid on to improve cotton fiber growth and production.The bioengineered transgenic cotton proved expedient in resolving inadequacies of conventional cotton,but still required improvements to encounter heightened demand of textile industries.One possible solution pertaining to this has been provided by nanoscience in the form of metal or metal oxide nanoparticles.These metal oxide nanoparticles have easy access to the various parts of cotton plants through its transportation system,and thus significantly influence several parameters relative to the growth and production of cotton fiber.This review summarizes the distribution and accumulation of metal oxide nanoparticles in cotton plant and its impact on different plant growth-promoting factors,which resulted in the improved cotton yields. 展开更多
关键词 COTTON Bt-transgenic nanoparticles metal oxide nanoparticles PHYTOHORMONES Superoxide dismutase Nutrient element
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Comparative Study of Removal of Hexavalent Chromium from Water Using Metal Oxide Nanoparticles
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作者 V. N. Bhusari Rashmi Dahake +1 位作者 Sadhana Rayalu Amit Bansiwal 《Advances in Nanoparticles》 2016年第1期67-74,共8页
Hexavalent chromium is one of the important heavy metals found in water and wastewater. The hexavalent form of chromium is considered to be a human carcinogen because of its mutagenic and carcinogenic properties. This... Hexavalent chromium is one of the important heavy metals found in water and wastewater. The hexavalent form of chromium is considered to be a human carcinogen because of its mutagenic and carcinogenic properties. This work has focused on the comparison of copper oxide nanoparticles and aluminium oxide nanoparticles for the removal of chromium(VI) from water. The cooper oxide nanoparticles (CuNP) and aluminium oxide nanoparticles (AlNP) were synthesised by sol gel method. Both the adsorbents were evaluated for the adsorption capacity using Langmuir and Freundlich adsorption model. The CuNP and AlNP were characterized for X-ray diffraction and SEM. The study indicated that the AlNP showed better removal as compared to CuNP and can be further explored as potential adsorbent for hexavalent chromium removal. 展开更多
关键词 ADSORPTION Chromium Removal metal oxide nanoparticles
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Capacitance characteristics of metal-oxide-semiconductor capacitors with a single layer of embedded nickel nanoparticles for the application of nonvolatile memory
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作者 李卫 徐岭 +4 位作者 赵伟明 丁宏林 马忠元 徐骏 陈坤基 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第4期408-412,共5页
This paper reports that metal-oxide-semiconductor (MOS) capacitors with a single layer of Ni nanopartictes were successfully fabricated by using electron-beam evaporation and rapid thermal annealing for application ... This paper reports that metal-oxide-semiconductor (MOS) capacitors with a single layer of Ni nanopartictes were successfully fabricated by using electron-beam evaporation and rapid thermal annealing for application to nonvolatile memory. Experimental scanning electron microscopy images showed that Ni nanoparticles of about 5 nm in diameter were clearly embedded in the SiO2 layer on p-type Si (100). Capacitance-voltage measurements of the MOS capacitor show large flat-band voltage shifts of 1.8 V, which indicate the presence of charge storage in the nickel nanoparticles. In addition, the charge-retention characteristics of MOS capacitors with Ni nanoparticles were investigated by using capacitance-time measurements. The results showed that there was a decay of the capacitance embedded with Ni nanoparticles for an electron charge after 104 s. But only a slight decay of the capacitance originating from hole charging was observed. The present results indicate that this technique is promising for the efficient formation or insertion of metal nanoparticles inside MOS structures. 展开更多
关键词 metal-oxide-SEMICONDUCTOR CAPACITANCE-VOLTAGE capacitance time Ni nanoparticles
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Correlation between catalytic activity of supported gold catalysts for carbon monoxide oxidation and metal–oxygen binding energy of the support metal oxides 被引量:3
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作者 Takashi Fujita Masanori Horikawa +2 位作者 Takashi Takei Tom Murayama Masatake Haruta 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第10期1651-1655,共5页
The effect of a wide variety of metal oxide (MOx) supports has been discussed for CO oxidation on nanoparticulate gold catalysts. By using typical co‐precipitation and deposition–precipitation methods and under id... The effect of a wide variety of metal oxide (MOx) supports has been discussed for CO oxidation on nanoparticulate gold catalysts. By using typical co‐precipitation and deposition–precipitation methods and under identical calcination conditions, supported gold catalysts were prepared on a wide variety of MOx supports, and the temperature for 50%conversion was measured to qualita‐tively evaluate the catalytic activities of these simple MOx and supported Au catalysts. Furthermore, the difference in these temperatures for the simple MOx compared to the supported Au catalysts is plotted against the metal–oxygen binding energies of the support MOx. A clear volcano‐like correla‐tion between the temperature difference and the metal–oxygen binding energies is observed. This correlation suggests that the use of MOx with appropriate metal–oxygen binding energies (300–500 kJ/atom O) greatly improves the catalytic activity of MOx by the deposition of Au NPs. 展开更多
关键词 metal oxide-supported gold nanoparticle catalyst Support effects Carbon monoxide oxidation Volcano-like correlation metal-oxygen binding energy
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Influence of metal nuclearity and physicochemical properties of ceria on the oxidation of carbon monoxide
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作者 Linxi Wang Shyam Deo +2 位作者 Kerry Dooley Michael J.Janik Robert M.Rioux 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第6期951-962,共12页
The redox properties of ceria make it suitable as a catalyst or support in oxidation reactions.Ceria-supported transition metal nanoparticles or isolated single atoms provide a metal-support interface that reduces the... The redox properties of ceria make it suitable as a catalyst or support in oxidation reactions.Ceria-supported transition metal nanoparticles or isolated single atoms provide a metal-support interface that reduces the energy cost to remove interfacial oxygen atoms,providing active oxygen species that can participate in Mars van Krevelen oxidation processes.CO oxidation is a key probe reaction to test the reducibility of ceria-supported catalysts and is also practically important in the elimination of CO at relatively low temperatures in various applications.Preferential oxidation of CO(PROX)in excess H2 controls the CO concentration to ultra-low levels to prevent poisoning of hydrogen oxidation electrocatalysts.The reactivity of catalysts in CO oxidation and selectivity towards CO over H2 in PROX is dependent on the type and dispersion of metal species,the structural and chemical properties of Ce O2,and the synthetic preparation methods of the catalysts.In this review,we summarize recently published works on catalytic CO oxidation and PROX reactions on ceria-supported metal nanoparticles and single atoms.We summarize the reactivity on different supported metals,and on different Ce O2 surfaces with the same metal.We summarize the most likely reaction mechanisms as suggested by density functional theory calculations.The factors contributing to selectivity towards CO oxidation in PROX reactions on various supported metals are also discussed. 展开更多
关键词 CERIA CO oxidation metal nanoparticles Single atoms Preferential oxidation of CO metal nuclearity
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Preparation and characterization of conductive antimony-doped tin oxide (ATO) nanoparticles
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作者 林锋 段学臣 任先京 《广东有色金属学报》 2005年第2期258-261,共4页
In this paper, conductive antimony-doped tin oxide (ATO) composite particles is prepared by hydroxylation method of metal alcoxides. This method has many advantages such as little pollution, low-cost, simple sheet and... In this paper, conductive antimony-doped tin oxide (ATO) composite particles is prepared by hydroxylation method of metal alcoxides. This method has many advantages such as little pollution, low-cost, simple sheet and equipment. The synthesis processing and the ATO nanoparticles are characterized by means of transmission electron microscope (TEM), X-ray diffraction (XRD), thermal gravimetric and differential thermal analysis, and BET. The results show that the ATO nanoparticles is tetragonal rutile crystal structure. TEM show that the particles are monodispersed with weak aggromation. The size of the particles calcinated at 700 is about 8nm. The specific areas are 153 m^2·g~ -1 . In addition to, ATO nanoparticles have good electric 展开更多
关键词 烃氧基金属 金属材料 粉末 电学性能
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金属纳米酶在菌斑生物膜相关口腔疾病防治中的研究进展
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作者 李昊 廖胤涵 《口腔疾病防治》 2024年第4期241-248,共8页
口腔菌斑生物膜作为多种细菌生存、代谢的基础,使口腔细菌难以被清除。随着抗生素滥用造成的耐药菌群出现,菌斑生物膜相关口腔疾病的防治难度进一步增加。尽管目前在研究生物膜形成、破坏有关机制方面取得了一定进展,但可用于临床的有... 口腔菌斑生物膜作为多种细菌生存、代谢的基础,使口腔细菌难以被清除。随着抗生素滥用造成的耐药菌群出现,菌斑生物膜相关口腔疾病的防治难度进一步增加。尽管目前在研究生物膜形成、破坏有关机制方面取得了一定进展,但可用于临床的有效治疗方案仍较缺乏。金属纳米酶具有纳米粒子的物理特性及类似天然酶的催化活性。金属纳米酶的纳米级尺寸提供了更大的比表面积,在发挥类酶作用产生大量活性氧的同时促进活性氧快速扩散到活性催化位点,增强纳米酶的抗氧化特性;同时金属纳米酶易通过电化学还原法、溶剂热合成法、微波辅助合成法等方法制取,且具有产生高浓度的羟基自由基、催化牙菌斑生物膜降解、氧化应激裂解葡聚糖抑制生物膜形成、释放金属离子杀灭细菌的潜力,有望成为防治口腔菌斑生物膜相关口腔疾病的新选择。金属纳米酶可通过口服、静脉注射、呼吸等方式进入生物体,但可能引发肺毒性、肝脏毒性、神经毒性等潜在毒性效应。在复杂的生物环境下,金属纳米酶毒性的发生可能涉及多重机制,其作用机制和安全性评价有待深入研究。本文拟从金属纳米酶的特性、抗菌机制、生物毒性及其在菌斑生物膜相关口腔疾病防治中的应用等多个方面阐述金属纳米酶的研究进展,为口腔疾病的防治提供新思路。 展开更多
关键词 金属纳米酶 纳米酶 人工酶 人工纳米材料 纳米粒子 活性氧 氧化应激 菌斑生物膜 生物膜 口腔疾病 生物毒性
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离子液体辅助合成纳米金属氧化物的研究进展
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作者 江玮 王瑞 +3 位作者 薛伟 安华良 赵新强 王延吉 《石油化工》 CAS CSCD 北大核心 2024年第1期105-114,共10页
离子液体的物理化学特性和氢键作用能够辅助纳米金属氧化物的定向生长,具有传统溶剂所不具备的优点,在纳米金属氧化物材料合成方面受到重视。综述了离子液体辅助合成TiO_(2),ZnO,γ-Al_(2)O_(3),ZrO_(2)四种纳米金属氧化物的最新研究进... 离子液体的物理化学特性和氢键作用能够辅助纳米金属氧化物的定向生长,具有传统溶剂所不具备的优点,在纳米金属氧化物材料合成方面受到重视。综述了离子液体辅助合成TiO_(2),ZnO,γ-Al_(2)O_(3),ZrO_(2)四种纳米金属氧化物的最新研究进展,重点结合离子液体阴阳离子的影响及诱导机制进行讨论。最后总结了离子液体辅助合成纳米金属氧化物可能面临的挑战和未来的研究方向。 展开更多
关键词 离子液体 金属氧化物 纳米颗粒 诱导机理
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应用于稠油降粘的纳米材料的研究进展 被引量:1
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作者 胡睿智 《广东化工》 CAS 2024年第4期52-54,共3页
稠油因其高粘度严重阻碍了高效开发,因此有效降低原油粘度,从而提高流动性至关重要。将纳米材料作为稠油降粘剂是一个新兴的研究课题。本文综述了近年来不同纳米材料(SiO_(2)纳米颗粒、金属氧化物纳米颗粒、碳纳米管、改性纳米颗粒和纳... 稠油因其高粘度严重阻碍了高效开发,因此有效降低原油粘度,从而提高流动性至关重要。将纳米材料作为稠油降粘剂是一个新兴的研究课题。本文综述了近年来不同纳米材料(SiO_(2)纳米颗粒、金属氧化物纳米颗粒、碳纳米管、改性纳米颗粒和纳米复合材料)在稠油降粘方面的研究进展,总结了不同纳米材料降粘机理与降粘效果,最后提出了该技术面临的挑战和未来研究方向。纳米材料用于稠油降粘有望对石油工业产生巨大的影响。 展开更多
关键词 稠油降粘 SiO_(2)纳米颗粒 金属氧化物纳米颗粒 碳纳米管 改性纳米颗粒和纳米复合材料
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Synthesis of Pd nanoparticles supported on CeO_2 nanotubes for CO oxidation at low temperatures 被引量:5
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作者 吴静谧 曾亮 +3 位作者 程党国 陈丰秋 詹晓力 巩金龙 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第1期83-90,共8页
Developing efficient supported Pd catalysts and understanding their catalytic mechanism in CO oxidation are challenging research topics in recent years.This paper describes the synthesis of Pd nanoparticles supported ... Developing efficient supported Pd catalysts and understanding their catalytic mechanism in CO oxidation are challenging research topics in recent years.This paper describes the synthesis of Pd nanoparticles supported on CeO2 nanotubes via an alcohol reduction method.The effect of the support morphology on the catalytic reaction was explored.Subsequently,the performance of the prepared catalysts was investigated toward CO oxidation reaction and characterized by Nitrogen sorption,X-ray diffraction,X-ray photoelectron spectroscopy,transmission electron microscopy,and CO-temperature-programmed desorption techniques.The results indicated that the catalyst of Pd on CeO2 nanotubes exhibits excellent activity in CO oxidation at low temperatures,due to its large surface area,the high dispersion of Pd species,the mesoporous and tubular structure of the CeO2-nanotube support,the abundant Ce3+,formation of Pd–O–Ce bonding,and enhanced metal–support interaction on the catalyst surface. 展开更多
关键词 Cerium oxide nanotube Palladium nanoparticle metal–support interaction Carbon monoxide oxidation Low temperature
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ZnO,TiO_2,SiO_2,and Al_2O_3 Nanoparticles-induced Toxic Effects on Human Fetal Lung Fibroblasts 被引量:6
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作者 ZHANG Xiao Qiang YIN Li Hong +1 位作者 TANG Meng PU Yue Pu 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2011年第6期661-669,共9页
Objective This study aims to investigate and compare the toxic effects of four types of metal oxide (ZnO, TiO2, SiO2, and Al2O3) nanoparticles with similar primary size (-20 nm) on human fetal lung fibroblasts (H... Objective This study aims to investigate and compare the toxic effects of four types of metal oxide (ZnO, TiO2, SiO2, and Al2O3) nanoparticles with similar primary size (-20 nm) on human fetal lung fibroblasts (HFL1) in vitro.Methods The HFL1 cells were exposed to the nanoparticles, and toxic effects were analyzed by using MTT assay, cellular morphology observation and Hoechst 33 258 staining.Results The results show that the four types of metal oxide nanoparticles lead to cellular mitochondrial dysfunction, morphological modifications and apoptosis at the concentration range of 0.25-1.50 mg/mL and the toxic effects are obviously displayed in dose-dependent manner. ZnO is the most toxic nanomaterials followed by TiO2, SiO2, and Al2O3 nanoparticles in a descending order.Conclusion The results highlight the differential cytotoxicity associated with exposure to ZnO, TiO2, SiO2, and Al2O3 nanoparticles, and suggest an extreme attention to safety utilization of these nanomaterials. 展开更多
关键词 metal oxide nanoparticles Toxic effects FIBROBLASTS
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Influence of nano-Al_2O_3-reinforced oxide-dispersion-strengthened Cu on the mechanical and tribological properties of Cu-based composites 被引量:4
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作者 Xiang Zhao Lei-chen Guo +7 位作者 Long Zhang Ting-ting Jia Cun-guang Chen Jun-jie Hao Hui-ping Shao Zhi-meng Guo Ji Luo Jun-bin Sun 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2016年第12期1444-1451,共8页
The mechanical and tribological properties of Cu-based powder metallurgy (P/M) friction composites containing 10wt%-50wt% oxide-dispersion-strengthened (ODS) Cu reinforced with nano-Al2O3 were investigated. Additi... The mechanical and tribological properties of Cu-based powder metallurgy (P/M) friction composites containing 10wt%-50wt% oxide-dispersion-strengthened (ODS) Cu reinforced with nano-Al2O3 were investigated. Additionally, the friction and wear behaviors as well as the wear mechanism of the Cu-based composites were characterized by scanning electron microscopy (SEM) in conjunction with energy-dispersive X-ray spectroscopy (EDS) elemental mapping. The results indicated that the Cu-based friction composite containing 30wt% ODS Cu exhibited the highest hardness and shear strength. The average and instantaneous friction coefficient curves of this sample, when operated in a high-speed train at a speed of 300 km/h, were similar to those of a commercial disc brake pad produced by Knorr-Bremse AG (Germany). Additionally, the lowest linear wear loss of the obtained samples was (0.008 ± 0.001) mm per time per face, which is much lower than that of the Knorr-Bremse pad ((0.01 ± 0.001) mm). The excellent performance of the developed pad is a consequence of the formation of a dense oxide composite layer and its close combination with the pad body. 展开更多
关键词 metal matrix composites oxide dispersion strengthening copper nanoparticles microstructure mechanical properties tribological properties
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Anisotropic gold nanoparticles: Preparation and applications in catalysis 被引量:6
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作者 Peter Priecel Hammed Adekunle Salami +2 位作者 Romen Herrera Padilla Ziyi Zhong Jose Antonio Lopez-Sanchez 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第10期1619-1650,共32页
Despite the high amount of scientific work dedicated to the gold nanoparticles in catalysis, most of the research has been performed utilising supported nanoparticles obtained by traditional impreg‐nation of gold sal... Despite the high amount of scientific work dedicated to the gold nanoparticles in catalysis, most of the research has been performed utilising supported nanoparticles obtained by traditional impreg‐nation of gold salts onto a support, co‐precipitation or deposition‐precipitation methods which do not benefit from the recent advances in nanotechnologies. Only more recently, gold catalyst scien‐tists have been exploiting the potential of preforming the metal nanoparticles in a colloidal suspen‐sion before immobilisation with great results in terms of catalytic activity and the morphology con‐trol of mono‐and bimetallic catalysts. On the other hand, the last decade has seen the emergence of more advanced control in gold metal nanoparticle synthesis, resulting in a variety of anisotropic gold nanoparticles with easily accessible new morphologies that offer control over the coordination of surface atoms and the optical properties of the nanoparticles (tunable plasmon band) with im‐mense relevance for catalysis. Such morphologies include nanorods, nanostars, nanoflowers, den‐dritic nanostructures or polyhedral nanoparticles to mention a few. In addition to highlighting newly developed methods and properties of anisotropic gold nanoparticles, in this review we ex‐amine the emerging literature that clearly indicates the often superior catalytic performance and amazing potential of these nanoparticles to transform the field of heterogeneous catalysis by gold by offering potentially higher catalytic performance, control over exposed active sites, robustness and tunability for thermal‐, electro‐and photocatalysis. 展开更多
关键词 Anisotropic metal nanoparticles Gold nanoparticles Gold catalysis PHOTOCATALYSIS ELECTROCATALYSIS Catalytic oxidation Colloidal gold nanoparticles Gold nanorod Gold nanostars Sol immobilisation
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