Synthesis of graphene nanocomposites integrated with 3D bimetallic magnesium/cobalt metal-organic framework as anodic material for solid-state asymmetric supercapacitors

被引:9
作者
Ahmad, Md. Wasi [1 ]
Anand, Surbhi [2 ]
Syed, Asad [3 ]
Bahkali, Ali H. [3 ]
Wong, Ling Shing [4 ]
Shrivastava, Ashutosh [5 ,6 ]
Choudhury, Arup [2 ]
Yang, Duck-Joo [5 ,6 ]
机构
[1] Dhofar Univ, Coll Engn, Dept Chem Engn, POB 211, Salalah, Oman
[2] Birla Inst Technol, Dept Chem Engn, Ranchi 835215, India
[3] King Saud Univ, Coll Sci, Dept Bot & Microbiol, PO 2455, Riyadh 11451, Saudi Arabia
[4] INTI Int Univ, Fac Hlth & Life Sci, Nilai 71800, Negeri Sembilan, Malaysia
[5] Univ Texas Dallas, Dept Chem, 800 W Campbell Rd, Richardson, TX 75080 USA
[6] Univ Texas Dallas, Alan G MacDiarmid NanoTech Inst, 800 W Campbell Rd, Richardson, TX 75080 USA
关键词
Bi-metallic metal-organic frameworks; Exfoliated graphene; Specific capacitance; Energy density; Slow self-discharge; PERFORMANCE; OXIDE; ARRAYS; ENERGY; ELECTROCHEMISTRY; COMPOSITES; GROWTH; MOF;
D O I
10.1016/j.surfin.2023.103834
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this study, we have grown 3D porous bimetallic Mg/Co MOF in the presence of exfoliated graphene nanoplates (EGNPs) via a one-step in-situ hydrothermal process, where 1,3,5-benzenetricarboxylic acid (BTC) was used as an effective organic linker since it is cost-effective and EGNPs served as a conductive component. Morphological characterization of Mg/Co-BTC MOF@EGNP nanohybrid confirmed the homogeneous growth of ball-shaped Mg/ Co-BTC MOF around the graphene nanoplates, while nitrogen adsorption-desorption analysis revealed large surface area with a high volume fraction of mesopores. This surface features is highly favorable for rapid ion/ electron transportation that ensures high specific gravimetric capacitance (838 F/g) and noticeable rate capability (81 % capacitance retention). As-synthesized nanohybrid was used as anode material to construct a prototype all-solid-state asymmetric supercapacitors (ASC) device with a significantly high energy density of 73.82 Wh kg-1, a wide potential window of 0-1.7 V, admirable capacitance retention of 95.1 % after 8000 cycles, and long self-discharge time. Moreover, these capacitance performances also demonstrates the reliability of the assynthesized poly vinyl alcohol (PVA)-Li2SO4 membrane as a separator-cum-electrolyte for fabrication of future leakage-proof ASCs for wearable electronics. This work can lead to manufacting innovation in the future.
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页数:11
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