TY - JOUR
T1 - ZIF-67@Se@MnO 2
T2 - A Novel Co-MOF-Based Composite Cathode for Lithium-Selenium Batteries
AU - Ye, Wenkai
AU - Li, Weiyang
AU - Wang, Ke
AU - Yin, Weihao
AU - Chai, Wenwen
AU - Qu, Yi
AU - Rui, Yichuan
AU - Tang, Bohejin
N1 - Publisher Copyright:
Copyright © 2018 American Chemical Society.
PY - 2019/1/31
Y1 - 2019/1/31
N2 - In this study, metal organic frameworks (MOFs) are prepared as a support to tether active selenium through melt-diffused method, in which MnO 2 nanoparticles are loaded on the surface of a Co-MOF (ZIF-67) through simple postmodification means. Selenium is uniformly dispersed on the surface of ZIF-67, and MnO 2 nanoparticles (∼5 nm in diameter) are coated on the surface of Se. As an analogue of sandwich, the MOF@Se@metal-oxide structure can inhibit the shuttle effect and dissolution of polyselenides in the electrolyte, which is confirmed by the cyclic voltammetry, galvanostatic discharge/charge, and electrochemical impedance tests. In addition, the cathode displays an excellent electrochemical performance. Especially, the discharge capacity of the ZIF-67@Se@MnO 2 cathode is 329 mA h g -1 after 100 cycles at 1C (C = 675 mA g -1 ) with the high capacity retention of 83.7%. Furthermore, the ZIF-67@Se@MnO 2 cathode displays stable capacities of 273 and 232 mA h g -1 after 100 cycles at 2C and 5C, respectively.
AB - In this study, metal organic frameworks (MOFs) are prepared as a support to tether active selenium through melt-diffused method, in which MnO 2 nanoparticles are loaded on the surface of a Co-MOF (ZIF-67) through simple postmodification means. Selenium is uniformly dispersed on the surface of ZIF-67, and MnO 2 nanoparticles (∼5 nm in diameter) are coated on the surface of Se. As an analogue of sandwich, the MOF@Se@metal-oxide structure can inhibit the shuttle effect and dissolution of polyselenides in the electrolyte, which is confirmed by the cyclic voltammetry, galvanostatic discharge/charge, and electrochemical impedance tests. In addition, the cathode displays an excellent electrochemical performance. Especially, the discharge capacity of the ZIF-67@Se@MnO 2 cathode is 329 mA h g -1 after 100 cycles at 1C (C = 675 mA g -1 ) with the high capacity retention of 83.7%. Furthermore, the ZIF-67@Se@MnO 2 cathode displays stable capacities of 273 and 232 mA h g -1 after 100 cycles at 2C and 5C, respectively.
UR - http://www.scopus.com/inward/record.url?scp=85060212672&partnerID=8YFLogxK
U2 - 10.1021/acs.jpcc.8b10598
DO - 10.1021/acs.jpcc.8b10598
M3 - 文章
AN - SCOPUS:85060212672
SN - 1932-7447
VL - 123
SP - 2048
EP - 2055
JO - Journal of Physical Chemistry C
JF - Journal of Physical Chemistry C
IS - 4
ER -