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Conductive Ni3(HITP)2 MOFs thin films for flexible transparent supercapacitors with high rate capability 被引量:4
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作者 Weiwei Zhao Tiantian Chen +7 位作者 Weikang Wang Beibei Jin Jiali Peng Shuaihang Bi Mengyue Jiang Shujuan Liu Qiang Zhao Wei Huang 《Science Bulletin》 SCIE EI CAS CSCD 2020年第21期1803-1811,M0003,M0004,共11页
The flexible transparent supercapacitors have been considered as one of the key energy-storage components to power the smart portable electronic devices.However,it is still a challenge to explore flexible transparent ... The flexible transparent supercapacitors have been considered as one of the key energy-storage components to power the smart portable electronic devices.However,it is still a challenge to explore flexible transparent capacitive electrodes with high rate capability.Herein,conductive Ni3(HITP)2(HITP=2,3,6,7,10,11-hexaiminotriphenylene)thin films are adopted as capacitive electrodes in flexible transparent supercapacitors.The Ni3(HITP)2 electrode possesses the excellent optoelectronic property with optical transmittance(T)of 78.4%and sheet resistance(Rs)of 51.3Ωsq-1,remarkable areal capacitance(CA)of 1.63 mF cm^-2and highest scan rate up to 5000 mV s-1.The asymmetric Ni3(HITP)2//PEDOT:PSS supercapacitor(T=61%)yields a high CA of 1.06 mF cm^-2at 3μA cm-2,which maintains 77.4%as the current density increases by 50 folds.The remarkable rate capability is ascribed to the collaborative advantages of low diffusion resistance and high ion accessibility,resulting from the intrinsic conductivity,short oriented pores and large specific areas of Ni3(HITP)2 films. 展开更多
关键词 Conductive film Metal-organic frameworks collaborative advantages Flexible transparent supercapacitors High rate capability
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