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反应性物种的电催化生成及其对微生物灭活的影响
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作者 Forrest Nichols kenneth IOzoemena 陈少伟 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第6期1399-1416,共18页
控制水系统(包括废水、再生加工用水和饮用水)中的微生物繁殖对社会健康的生活环境至关重要.电催化反应产生的反应活性物种(RS)可以使微生物失活,从而为控制微生物生长提供了有效途径.本文概述了电催化反应产生RS及其应用于水消毒的最... 控制水系统(包括废水、再生加工用水和饮用水)中的微生物繁殖对社会健康的生活环境至关重要.电催化反应产生的反应活性物种(RS)可以使微生物失活,从而为控制微生物生长提供了有效途径.本文概述了电催化反应产生RS及其应用于水消毒的最新进展,重点介绍了RS的选择性生产、微生物与RS的相互作用(包括RS作用机制和微生物对RS的天然反应),以及催化反应产生的RS用于微生物灭活的实际应用.本文还展望了基于RS的水电化学消毒的挑战和机遇以及未来可能的研究方向. 展开更多
关键词 电催化 活性物种 微生物 灭活 水电化学消毒
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Charge storage mechanisms of cathode materials in rechargeable aluminum batteries 被引量:1
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作者 Jiashen Meng Lujun Zhu +2 位作者 Aderemi B.Haruna kenneth i.ozoemena Quanquan Pang 《Science China Chemistry》 SCIE EI CSCD 2021年第11期1888-1907,共20页
Rechargeable aluminum batteries(RABs)have attracted great interest as one of the most promising candidates for large-scale energy storage because of their high volumetric capacity,low cost,high safety and the abundanc... Rechargeable aluminum batteries(RABs)have attracted great interest as one of the most promising candidates for large-scale energy storage because of their high volumetric capacity,low cost,high safety and the abundance of aluminum.However,compared with the aluminum anodes,the cathode materials face more problems including low specific capacity,relatively sluggish kinetics in most host structures and/or limited cycle lifespan,which pose the major challenge for RABs in further practical applications.During the past years,intensive efforts have been devoted to developing new cathode materials and/or designing engineered nanostructures to greatly improve RABs’electrochemical performances.In addition to nanotechnologybased electrode structure designs,the intrinsic chemical structures and charge storage mechanisms of cathode materials play an equally crucial role,if not more,in revolutionizing the battery performances.This review,here,focuses on current understandings into the charge storage mechanisms of cathode materials in RABs from a chemical reaction point of view.First,the fundamental chemistry,charge storage mechanisms and design principles of RAB cathode materials are highlighted.Based on different ion charge carriers,the current cathode materials are classified into four groups,including Al^(3+)-hosting,Al Cl_(4)^(-)-hosting,Al Cl_(2)^(+)/Al Cl_(2)^(+)-hosting,and Cl^(-)-hosting cathode materials.Next,the respective typical electrode structures,optimization strategies,electrochemical performances and charge storage mechanisms are discussed in detail to establish their chemistry-structure-property relationships.This review on current understandings of the cathode charge storage mechanisms will lay the ground and hopefully set new directions into the rational design of high-performance cathode materials in RABs,and open up new opportunities for designing new electrolyte systems with respect to the targeted cathode systems. 展开更多
关键词 rechargeable aluminum batteries charge storage mechanisms cathode materials charge carriers large-scale energy storage
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分级FeCoNi磷化物的计量设计及其高效析氧性能
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作者 陈江波 应杰 +4 位作者 肖宇轩 董缘 kenneth i.ozoemena Silvia Lenaerts 阳晓宇 《Science China Materials》 SCIE EI CAS CSCD 2022年第10期2685-2693,共9页
过渡金属磷化物是电催化设计中的新兴材料,而多元金属磷化物因其能显著提高电催化活性而备受关注.然而,由于不同种类金属前驱物之间水解和缩合速率的差异,当前有关超过两种金属元素和化学计量比精确控制的多元金属磷化物的报道非常少.因... 过渡金属磷化物是电催化设计中的新兴材料,而多元金属磷化物因其能显著提高电催化活性而备受关注.然而,由于不同种类金属前驱物之间水解和缩合速率的差异,当前有关超过两种金属元素和化学计量比精确控制的多元金属磷化物的报道非常少.因此,合理设计多元金属磷化物的组成对提高其催化性能具有重要意义.本工作通过直接磷化二价过渡金属离子氢氧化物的合成策略,制备了能够精确控制化学计量比(x:y:z=(1–10):(1–10):1)的分级结构Co_(x)Ni_(y)Fe_(z)P,其中具有最优组分的Co_(1.3)Ni_(0.5)Fe_(0.2)P在析氧反应(OER)中展示了优异的催化活性和高稳定性.密度泛函理论计算表明,相对于其他组分的过渡金属磷化物,Co_(1.3)Ni_(0.5)Fe_(0.2)P在费米能级附近的态密度明显增加,这可以增强催化剂对OH−的吸附,从而提升OER性能. 展开更多
关键词 化学计量比 密度泛函理论计算 金属磷化物 析氧反应 分级结构 费米能级 磷化 新兴材料
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