教授
博士生导师
硕士生导师
教师拼音名称:zhuxiaodong
电子邮箱:
职称:教授
毕业院校:哈尔滨工业大学
学术荣誉:2019 当选:省高端人才
邮箱:
2019-09-26 泰山学者青年专家
2009-01-06 “国防科技创新团队”核心成员
2007-05-15 黑龙江省优秀毕业生(博士)
2007-06-30 哈尔滨工业大学优秀毕业生
最后更新时间:..
关键字:ENERGY-STORAGE; BATTERIES; DEVICE
摘要:The high safety, compatible device size, superior energy density, and cost efficiency make in-plane aqueous zinc-ion microbatteries (AZIMBs) one of the most promising candidates for miniaturized energy storage. However, the inherent stacking structure within in-plane AZIMBs poses a hindrance to improving their energy density. Herein, this work presents a one-step approach for fabricating 3D cross-linked structures in V2CTx@rGO microelectrodes by laser processing technology, aiming to enhance the electrochemical performance of AZIMBs within a limited area by exploiting the vertical dimension of 3D architectures. The laser heat generated during laser processing induces the conversion of a 2D V2CTx@GO stacked structure into a 3D V2CTx@rGO skeleton structure, enabling the microelectrode to possess an optimal 3D conductive network, efficient charge transport pathway, and complete exposure of active sites. Moreover, the utilization of vanadium-based oxides derived from V2CTx MXene nanosheets on the surface during charging enhances the electrochemical performance of 3D AZIMBs. The obtained 3D VOx-V2CTx@rGO microelectrodes exhibit excellent rate performance, demonstrating an average reversible capacity ranging from 459 to 342 mA h g(-1) at current densities varying from 0.8 to 2.5 A g(-1), respectively. Additionally, the fabricated 3D VOx-V2CTx@rGO AZIMBs demonstrate exceptional flexibility and integrability, thus showing significant potential in microsized energy storage devices.
卷号:12
期号:24
是否译文:否