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电化学调控原子转移自由基聚合动力学模拟初步研究
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作者 郭君康 周寅宁 罗正鸿 《应用技术学报》 2017年第1期14-21,31,共9页
基于矩方法建立了电化学调控原子转移自由基聚合(eATRP)的动力学模型.利用该模型分析了eATRP与普通ATRP之间的区别,并模拟了过电位、催化剂浓度和引发剂浓度对聚合反应的影响.模拟结果表明,过电位的增大对聚合反应速率的促进作用明显,... 基于矩方法建立了电化学调控原子转移自由基聚合(eATRP)的动力学模型.利用该模型分析了eATRP与普通ATRP之间的区别,并模拟了过电位、催化剂浓度和引发剂浓度对聚合反应的影响.模拟结果表明,过电位的增大对聚合反应速率的促进作用明显,但聚合物分散指数(PDI)不变;增大催化剂浓度可以提高聚合反应速率,同时降低PDI.当催化剂含量(催化剂与单体浓度之比)低至3×10-5时,PDI在反应时间内不能达到稳定且其值高达1.2以上;引发剂的影响主要体现在反应的诱导期长短上,当引发剂与单体浓度比下降至0.5…300时,诱导期从200s迅速增大到400s左右. 展开更多
关键词 电化学调控原子转移自由基聚合 反应动力学 动力学模型
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超氧化物歧化酶催化-电化学调控的原子转移自由基聚合方法制备分子印迹聚合物 被引量:2
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作者 刘雨桐 赵梦元 +2 位作者 李思雨 杨艺菲 孙越 《应用化学》 CAS CSCD 北大核心 2019年第5期585-594,共10页
病理学中对含金属蛋白质的敏感检测极其重要。本文以超氧化物歧化酶(SOD)作为金属蛋白,SOD既作为模板分子又作为催化剂进行电化学调控的原子转移自由基聚合(e ATRP)反应制备蛋白质印迹聚合物(PIPs),用于SOD电化学生物传感器。该方法不... 病理学中对含金属蛋白质的敏感检测极其重要。本文以超氧化物歧化酶(SOD)作为金属蛋白,SOD既作为模板分子又作为催化剂进行电化学调控的原子转移自由基聚合(e ATRP)反应制备蛋白质印迹聚合物(PIPs),用于SOD电化学生物传感器。该方法不需要过渡金属离子,具有制备简单、节约试剂、保护环境等优点。我们选用L-半胱氨酸和纳米金修饰的金电极(Au/L-cys/nano Au)作为工作电极将氧化型SOD催化还原为还原型SOD,利用还原型SOD的Cu (Ⅰ)粒子,在引发剂4-硫苯基-2-溴-2-甲基丙酸酯(4-mercaptophenyl2-bromo-2-methylpropanoate,4-HTP-Br)修饰的金电极上调控丙烯酰胺、N,N-亚甲基双丙烯酰胺的e ATRP聚合制备SOD PIPs。利用循环伏安法(CV)和X射线光电子能谱(XPS)方法对其进行了表征。通过微分脉冲伏安法(DPV),在最优的条件下利用此修饰电极对溶液中的SOD进行检测,线性响应范围为1. 0×10-7~1. 0×102mg/L,检测限为6. 8×10-8mg/L(S/N=3),相关系数为0. 995。与其它检测SOD的方法相比,该方法具有更宽的线性范围和较低的检测限。本研究对于制备PIPs,用蛋白质催化的e ATRP和含金属蛋白的敏感检测均有重要意义。 展开更多
关键词 蛋白质印迹聚合物 电化学调控原子转移自由基聚合 超氧化物歧化酶 传感器
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相工程制备新型二维纳米材料及其增强肿瘤治疗研究
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作者 宋京润 罗志敏 黄竹胜 《福建师范大学学报(自然科学版)》 CAS 2023年第4期1-9,共9页
二维纳米材料具有独特的结构与性能,纳米材料相工程可以调控材料的结构与性能,拓宽材料的应用领域.综述了二维纳米材料的定义及其制备方式,介绍了纳米材料相工程的概念、相工程的结构调控方式及相工程制备的纳米材料在增强肿瘤治疗方面... 二维纳米材料具有独特的结构与性能,纳米材料相工程可以调控材料的结构与性能,拓宽材料的应用领域.综述了二维纳米材料的定义及其制备方式,介绍了纳米材料相工程的概念、相工程的结构调控方式及相工程制备的纳米材料在增强肿瘤治疗方面的应用,为进一步拓展相工程的应用提供新的思路和视野. 展开更多
关键词 二维纳米材料 相工程 调控原子 纳米医学 肿瘤治疗
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Recent advances on Bi_(2)WO_(6)‐based photocatalysts for environmental and energy applications 被引量:11
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作者 Tong Chen Lizhen Liu +1 位作者 Cheng Hu Hongwei Huang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第9期1413-1438,共26页
Bismuth tungstate(Bi_(2)WO_(6))has become a research hotspot due to its potential in photocatalytic energy conversion and environmental purification.Nevertheless,the limited light absorption and fast recombination of ... Bismuth tungstate(Bi_(2)WO_(6))has become a research hotspot due to its potential in photocatalytic energy conversion and environmental purification.Nevertheless,the limited light absorption and fast recombination of photogenerated carriers hinder the further improvement of the photocatalytic performance of Bi_(2)WO_(6).Herein,we provide a systematic review for the recent advances on Bi_(2)WO_(6)‐based photocatalysts.It starts with the crystal structure,optical properties and photocatalytic fundamentals of Bi_(2)WO_(6).Then,we focus on the modification strategies of Bi_(2)WO_(6)based on morphology control,atomic modulation and composite fabrication for diverse photocatalytic applications,such as organic synthesis,water splitting,CO2 reduction,water treatment,air purification,bacterial inactivation,etc.Finally,some current challenges and future development prospects are proposed.We expect that this review can provide a useful reference and guidance for the development of efficient Bi_(2)WO_(6)photocatalysts. 展开更多
关键词 Bi2WO6 PHOTOCATALYST Morphology control Atomic modulation Composite fabrication
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Ru/FeO_x catalyst performance design: Highly dispersed Ru species for selective carbon dioxide hydrogenation 被引量:2
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作者 Di Zhang Jingjie Luo +5 位作者 Jiajie Wang Xin Xiao Yuefeng Liu Wei Qi Dang Sheng Su Wei Chu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第1期157-166,共10页
A series of Ru/FeOx catalysts were synthesized for the selective hydrogenation of CO2to CO.Detailed characterizations of the catalysts through X‐ray diffraction,X‐ray photoelectron spectroscopy,transmission electron... A series of Ru/FeOx catalysts were synthesized for the selective hydrogenation of CO2to CO.Detailed characterizations of the catalysts through X‐ray diffraction,X‐ray photoelectron spectroscopy,transmission electron microscopy,and temperature‐programmed techniques were performed to directly monitor the surface chemical properties and the catalytic performance to elucidate the reaction mechanism.Highly dispersed Ru species were observed on the surface of FeOx regardless of the initial Ru loading.Varying the Ru loading resulted in changes to the Ru coverage over the FeOx surface,which had a significant impact on the interaction between Ru and adsorbed H,and concomitantly,the H2activation capacity via the ability for H2dissociation.FeOx having0.01%of Ru loading exhibited100%selectivity toward CO resulting from the very strong interaction between Ru and adsorbed H,which limits the desorption of the activated H species and hinders over‐reduction of CO to CH4.Further increasing the Ru loading of the catalysts to above0.01%resulted in the adsorbed H to be easily dissociated,as a result of a weaker interaction with Ru,which allowed excessive CO reduction to produce CH4.Understanding how to selectively design the catalyst by tuning the initial loading of the active phase has broader implications on the design of supported metal catalysts toward preparing liquid fuels from CO2.?2018,Dalian Institute of Chemical Physics,Chinese Academy of Sciences toward preparing liquid fuels from CO2.?2018,Dalian Institute of Chemical Physics,Chinese Academy of Sciences.Published by Elsevier B.V.All rights reserved. 展开更多
关键词 Highly dispersed Ru/FeOx catalyst Temperature‐programmed surface reaction CO2 selective hydrogenation Product selectivity Hydrogen adsorption
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Modulating the microenvironment structure of single Zn atom:ZnN_(4)P/C active site for boosted oxygen reduction reaction 被引量:3
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作者 Syed Shoaib Ahmad Shah Tayyaba Najam +3 位作者 Jiao Yang Muhammad Sufyan Javed Lishan Peng Zidong Wei 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第8期2193-2201,共9页
The electronic structure of catalytic active sites can be influenced by modulating the coordination bonding of the central single metal atom,but it is difficult to achieve.Herein,we reported the single Zn-atom incorpo... The electronic structure of catalytic active sites can be influenced by modulating the coordination bonding of the central single metal atom,but it is difficult to achieve.Herein,we reported the single Zn-atom incorporated dual doped P,N carbon framework(Zn-N_(4)P/C)for ORR via engineering the surrounding coordination environment of active centers.The Zn-N_(4)P/C catalyst exhibited comparable ORR activity(E_(1/2)=0.86 V)and significantly better ORR stability than that of Pt/C catalyst.It also shows respectable performance in terms of maximum peak power density(249.6 mW cm^(-2)),specific capacitance(779 mAh g^(-1)),and charge-discharge cycling stability for 150 hours in Zn-air battery.The high catalytic activity is attributed to the uniform active sites,tunable electronic/geometric configuration,optimized intrinsic activity,and faster mass transfer during ORR-pathway.Further,theoretical results exposed that the Zn-N_(4)P configuration is more electrochemically active as compared to Zn-N_(4) structure for the oxygen reduction reaction. 展开更多
关键词 N- P-doping Oxygen reduction reaction Zn-air battery Single-atom catalyst Microenvironment modulation
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Regulating carbon work function to boost electrocatalytic activity for the oxygen reduction reaction
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作者 Yazhi Cai Li Tao +3 位作者 Gen Huang Nana Zhang Yuqin Zou Shuangyin Wang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第6期938-944,共7页
Electronic regulation of carbon is essential for developing non-platinum electrocatalysts for oxygen reduction reactions(ORRs).In this work,we used Cs to further regulate the electronic structure of nitrogen-doped(N-d... Electronic regulation of carbon is essential for developing non-platinum electrocatalysts for oxygen reduction reactions(ORRs).In this work,we used Cs to further regulate the electronic structure of nitrogen-doped(N-doped)carbon.The Cs atoms coordinated with the nitrogen atom in the N-doped carbon for injecting electrons into the carbon conjugate structure and reducing the work function of the carbon network.The low-work-function surface improved electron donation,facilitated O_(2) dissociation,and enhanced the adsorption of an OOH^(*) intermediate.Thus,electrocatalytic performance for the ORR was improved.The material shows potential as an ORR electrocatalyst comparable with Pt/C. 展开更多
关键词 Cesium doping Nitrogen-doped carbon Electronic regulation Work function Oxygen reduction reaction
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The effect of the carbon components on the performance of carbonbased transition metal electrocatalysts for the hydrogen evolution reaction
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作者 LI Guo-hua WANG Jing +6 位作者 REN Jin-tian LIU Hong-chen QIAN Jin-xiu CHENG Jia-ting ZHAO Mei-tong YANG Fan LI Yong-feng 《新型炭材料(中英文)》 SCIE EI CAS 2024年第5期946-972,共27页
The hydrogen evolution reaction(HER)is a promising way to produce hydrogen,and the use of non-precious metals with an excellent electrochemical performance is vital for this.Carbon-based transition metal catalysts hav... The hydrogen evolution reaction(HER)is a promising way to produce hydrogen,and the use of non-precious metals with an excellent electrochemical performance is vital for this.Carbon-based transition metal catalysts have high activity and stability,which are important in reducing the cost of hydrogen production and promoting the development of the hydrogen production industry.However,there is a lack of discussion regarding the effect of carbon components on the performance of these electrocatalysts.This review of the literature discusses the choice of the carbon components in these catalysts and their impact on catalytic performance,including electronic structure control by heteroatom doping,morphology adjustment,and the influence of self-supporting materials.It not only analyzes the progress in HER,but also provides guidance for synthesizing high-performance carbon-based transition metal catalysts. 展开更多
关键词 Carbon-based transition metal catalysts Heteroatom doping Morphology adjustment Self-supporting materials Hydrogen evolution reaction
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