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electrochemical route to holey graphene nanosheets

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and their assembly into aerogel with improved ion transport property. Electrochim. Acta, 2016, 212 , 171–178 [9] C. H. Yang, P. L. Huang, X. F. Luo, C. H. Wang, C. Li, Y. H. Wu, J. K. Chang, Holey graphene nanosheets with surface functional groups as high-performance supercapacitors in ionic-liquid electrolyte. ChemSusChem, 2015, 8, 1779–1786. [10] Y. Xu, C.-Y. Chen, Z. Zhao, Z. Lin, C. Lee, X. Xu, C. Wang, Y. Huang, M. I. Shakir, X. Duan, Solution Processable Holey Graphene Oxide and Its Derived Macrostructures for High-Performance Supercapacitors. Nano Lett., 2015, 15, 4605– 4610. [11] Y. Lin, X. Han, C. J. Campbell, J.-W. Kim, B. Zhao, W. Luo, J. Dai, L. Hu, J. W. Connell. Holey Graphene Nanomanufacturing: Structure, Composition, and Electrochemical Properties. Adv. Funct. Mater. 2015, 25, 2920–2927. [12] J. Wang, T. Park, J. W. Yi, B. Ding, J. Henzie, Z. Chang, H. Dou, X. Zhang, Y. Yamauchi. Scalable synthesis of holey graphite nanosheets for supercapacitors with high volumetric capacitance. Nanoscale Horiz., 2019, 4, 526-530. [13] K. Xia, Q. Li, L. Zheng, K. You, X. Tian, B. Han, Q. Gao, Z. Huang, G. Chen, C. Zhou, Controllable fabrication of 2D and 3D porous graphene architectures using identical thermally exfoliated graphene oxides as precursors and their application as supercapacitor electrodes. Micropor. Mesopor. Mater., 2017, 237, 228-236. [14] X. Dong, N. Hu, L. Wei, Y. Su, H. Wei, L. Yao, X. Li, Y. Zhang, J. Mater. Chem. A, 2016, 4, 9739–9743. [15] Y. Bai, X. Yang, Y. He, J. Zhang, L. Kang, H. Xu, F. Shi, Z. Lei, Z.-H. Liu, Formation process of holey graphene and its assembled binder-free film electrode with high volumetric capacitance. Electrochim. Acta, 2016, 187, 543–551 [16] Y.-Y. Peng, Y.-M. Liu, J.-K. Chang, C.-H. Wu, M.-D. Ger, N.-W. Pu, C.-L. Chang, A facile approach to produce holey graphene and its application in supercapacitors. Carbon, 2015, 81, 347–356. [17] S. K. Jhajharia, K. Selvaraj, Non-templated ambient nanoperforation of graphene: a novel scalable process and its exploitation for energy and environmental applications, Nanoscale, 2015, 7, 19705–19713. S-14

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