材料科学
阳极
铋
阴极
电解质
电化学
电池(电)
化学工程
纳米颗粒
电极
纳米技术
储能
水溶液
复合数
碳纤维
复合材料
电气工程
冶金
化学
有机化学
功率(物理)
物理化学
工程类
量子力学
物理
作者
Yanxia Yu,Haozhe Zhang,Fan Yang,Yinxiang Zeng,Xiaoqing Liu,Xihong Lu
标识
DOI:10.1016/j.ensm.2021.06.042
摘要
Bismuth (Bi) electrochemistry holds great potential for aqueous energy storage in terms of its highly-reversible redox capability in alkaline solution, low-cost, and safety. However, Bi-based batteries still suffer from limited performance of Bi anodes and unsatisfying output voltage. Herein, to address these issues, we develop an advanced Bi electrode consisting of oxygen-functionalized Bi nanoparticles embedded in porous carbon frameworks ([email protected]), which was paired with a high potential MnO2 cathode via an electrolyte-decoupling configuration to achieve a high voltage bismuth-based battery. The presence of the subtly-designed oxygen interface favors efficient adsorption of OH− ions while its unique 3D carbon matrix provides an interconnected pathway for electron charge transport. As a result, the [email protected] anode exhibits a remarkable capacity (347.2 mAh g−1 at 3 A g−1) close to its theoretical value, an excellent rate capability (60% capacity retention at a high current density of 20 A g−1) and outstanding long-term cyclability (96% capacity retention over 9500 cycles). Furthermore, this new Bi//MnO2 hybrid battery possesses merits of high energy density (213 Wh kg−1) and output voltage (1.62 V). This work is expected to shed some lights on properly elevating the energy density of aqueous Bi batteries via electrode design.
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