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Cation-Anion Redox Active Organic Complex for High Performance Aqueous Zinc Ion Battery
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作者 Lilin Zhang Yining Chen +5 位作者 Zongyuan Jiang Jingwei Chen Cong Wei Wenzhuo Wu Shaohui Li Qun Xu 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第1期60-67,共8页
Organic redox compounds are attractive cathode materials in aqueous zinc-ion batteries owing to their low cost,environmental friendliness,multiple-electron-transfer reactions,and resource sustainability.However,the re... Organic redox compounds are attractive cathode materials in aqueous zinc-ion batteries owing to their low cost,environmental friendliness,multiple-electron-transfer reactions,and resource sustainability.However,the realized energy density is constrained by the limited capacity and low voltage.Herein,copper-tetracyanoquinodimethane(CuTCNQ),an organic charge-transfer complex is evaluated as a zinc-ion battery cathode owing to the good electron acceptation ability in the cyano groups that improves the voltage output.Through electrochemical activation,electrolyte optimization,and adoption of graphene-based separator,CuTCNQ-based aqueous zinc-ion batteries deliver much improved rate performance and cycling stability with anti-self-discharge properties.The structural evolution of CuTCNQ during discharge/charge are investigated by ex situ Fourier transform infra-red(FT-IR)spectra,ex situ X-ray photoelectron spectroscopy(XPS),and in situ ultraviolet visible spectroscopy(UV-vis),revealing reversible redox reactions in both cuprous cations(Cu^(+))and organic anions(TCNQ^(x-1)),thus delivering a high voltage output of 1.0 V and excellent discharge capacity of 158 mAh g^(-1).The remarkable electrochemical performance in Zn//CuTCNQ is ascribed to the strong inductive effect of cyano groups in CuTCNQ that elevated the voltage output and the graphene-modified separator that inhibited CuTCNQ dissolution and shuttle effect in aqueous electrolytes. 展开更多
关键词 cathode materials cyano groups electrochemical activation organic charge-transfer complex zinc-ion battery
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PVK/C60电荷转移络合物的光谱研究 被引量:4
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作者 汪长春 邓伯娟 府寿宽 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 1994年第10期1559-1562,共4页
利用紫外光谱、荧光光谱研究了PVK/C_(60)~*(C_(60)~*与C_(70)混合物)体系的光谱行为,实验结果表明,PVK与C_(60)之间存在电荷转移络合作用。紫外光谱结果表明PVK/C_(60)~*电荷转移络合物... 利用紫外光谱、荧光光谱研究了PVK/C_(60)~*(C_(60)~*与C_(70)混合物)体系的光谱行为,实验结果表明,PVK与C_(60)之间存在电荷转移络合作用。紫外光谱结果表明PVK/C_(60)~*电荷转移络合物的特征吸收峰在474nm附近,这与理论计算结果相吻合.PVK单元与C_(60)之间的最佳匹配约为5:1.荧光光谱结果进一步证明了PVK与C_(60)~*之间的电荷转移络合作用的存在。 展开更多
关键词 PVK 碳60 电荷转移 络合物 光谱
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