eprintid: 1375672
rev_number: 32
eprint_status: archive
userid: 608
dir: disk0/01/37/56/72
datestamp: 2012-11-30 03:15:24
lastmod: 2021-09-20 22:25:25
status_changed: 2012-11-30 03:15:24
type: article
metadata_visibility: show
item_issues_count: 0
creators_name: Lu, ZY
creators_name: Zhu, W
creators_name: Lei, XD
creators_name: Williams, GR
creators_name: O'Hare, D
creators_name: Chang, Z
creators_name: Sun, XM
creators_name: Duan, X
title: High pseudocapacitive cobalt carbonate hydroxide films derived from CoAl layered double hydroxides
ispublished: pub
divisions: UCL
divisions: B02
divisions: C08
divisions: D10
divisions: G08
note: Times Cited: 0 Lu, Zhiyi Zhu, Wei Lei, Xiaodong Williams, Gareth R. O'Hare, Dermot Chang, Zheng Sun, Xiaoming Duan, Xue
abstract: A thin nanosheet of mesoporous cobalt carbonate hydroxide (MPCCH) has been fabricated from a CoAl-LDH nanosheet following removal of the Al cations by alkali etching. The basic etched electrode exhibits enhanced specific capacitance (1075 F g−1 at 5 mA cm−2) and higher rate capability and cycling stability (92% maintained after 2000 cycles).
date: 2012
official_url: http://dx.doi.org/10.1039/c2nr30617d
vfaculties: VFLS
oa_status: green
full_text_type: pub
language: eng
primo: open
primo_central: open_green
article_type_text: JOUR
verified: verified_manual
elements_source: Manually entered
elements_id: 829792
doi: 10.1039/c2nr30617d
medium: 12
lyricists_name: Williams, Gareth
lyricists_id: GWILL02
full_text_status: public
publication: Nanoscale
volume: 4
pagerange: 3640 - 3643
issn: 2040-3364
citation:        Lu, ZY;    Zhu, W;    Lei, XD;    Williams, GR;    O'Hare, D;    Chang, Z;    Sun, XM;           Lu, ZY;  Zhu, W;  Lei, XD;  Williams, GR;  O'Hare, D;  Chang, Z;  Sun, XM;  Duan, X;   - view fewer <#>    (2012)    High pseudocapacitive cobalt carbonate hydroxide films derived from CoAl layered double hydroxides.                   Nanoscale , 4    3640 - 3643.    10.1039/c2nr30617d <https://doi.org/10.1039/c2nr30617d>.       Green open access   
 
document_url: https://discovery.ucl.ac.uk/id/eprint/1375672/1/GRW_Nanoscale_2012.pdf