Editable asymmetric all-solid-state supercapacitors based on high-strength, flexible, and programmable 2D-metal–organic framework/reduced graphene oxide self-assembled papers
Junye Cheng(Nanyang Normal University), Wenjun Zhang(Ocean University of China), Ji‐Jung Kai(City University of Hong Kong), Taolin Zhang(Hunan University of Technology), Feiyu Kang(Tsinghua–Berkeley Shenzhen Institute), Shengmei Chen(City University of Hong Kong), Tianpeng Jiao(City University of Hong Kong), Linjie Zhi(China University of Petroleum, East China), Da Chen(UNSW Sydney), Hao Wang(University of Science and Technology Liaoning), Deqing Zhang(Qiqihar University), Jinjie Wang(Tsinghua University), Guangping Zheng(Hong Kong Polytechnic University), Bin Liu(City University of Hong Kong), Liubing Dong(Jinan University)
Cited by 148
Related Papers
Holey Graphitic Carbon Nitride Nanosheets with Carbon Vacancies for Highly Improved Photocatalytic Hydrogen Production
|Advanced Functional Materials|2015|1.1k
Past, present and future prospective of global carbon fibre composite developments and applications
|Composites Part B Engineering|2022|968
Macroscopic 3D Porous Graphitic Carbon Nitride Monolith for Enhanced Photocatalytic Hydrogen Evolution
|Advanced Materials|2015|648
Towards ultrahigh volumetric capacitance: graphene derived highly dense but porous carbons for supercapacitors
|Scientific Reports|2013|625