| Literature DB >> 31521966 |
Xin Fu1, Xiao Wang2, Yuxiang Chen1, Wangchen Huo1, Xiaoying Liu3, Ke Chen1, Fan Dong4, Hong-Chang Yao5, Yuxin Zhang6.
Abstract
The 1D low-crystalline and ultrathin MnO2-RT nanotubes consisted of tiny nanoflakes are rapid synthesized at ambient temperature through a facile oxidation-etching method, where Cu nanowires are served as sacrificial templates. Meanwhile, the MnO2-RT nanotubes can be undergone further nucleation and growth to generate 3D porous MnO2 nanotubes by calcination treatment and hydrothermal reaction, respectively. Importantly, the high specific capacitance of 384.6 F g-1 is obtained at the current density of 0.25 A g-1 for the low-crystalline MnO2-RT nanotubes, owing to its ultra-thin wall thickness, high surface area and highly disordered structure. Furthermore, the cycle stability of the low-crystalline MnO2 nanotubes can be improved by hydrothermal treatment, owing to the enhanced crystallinity.Entities:
Keywords: High capacitance; Low-crystalline; MnO(2) nanotubes; Templated synthesis
Year: 2019 PMID: 31521966 DOI: 10.1016/j.jcis.2019.09.024
Source DB: PubMed Journal: J Colloid Interface Sci ISSN: 0021-9797 Impact factor: 8.128