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Self-sacrifice Template Formation of Hollow Hetero-Ni(7)S(6)/Co(3)S(4) Nanoboxes with Intriguing Pseudo-capacitance for High-performance Electrochemical Capacitors

Herein, we report a simple yet efficient self-sacrifice template protocol to smartly fabricate hollow hetero-Ni(7)S(6)/Co(3)S(4) nanoboxes (Ni-Co-S NBs). Uniform nickel cobalt carbonate nanocubes are first synthesized as the precursor via solvothermal strategy, and subsequently chemically sulfidized...

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Autores principales: Hua, Hui, Liu, Sijia, Chen, Zhiyi, Bao, Ruiqi, Shi, Yaoyao, Hou, Linrui, Pang, Gang, Hui, Kwun Nam, Zhang, Xiaogang, Yuan, Changzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4750087/
https://www.ncbi.nlm.nih.gov/pubmed/26865246
http://dx.doi.org/10.1038/srep20973
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author Hua, Hui
Liu, Sijia
Chen, Zhiyi
Bao, Ruiqi
Shi, Yaoyao
Hou, Linrui
Pang, Gang
Hui, Kwun Nam
Zhang, Xiaogang
Yuan, Changzhou
author_facet Hua, Hui
Liu, Sijia
Chen, Zhiyi
Bao, Ruiqi
Shi, Yaoyao
Hou, Linrui
Pang, Gang
Hui, Kwun Nam
Zhang, Xiaogang
Yuan, Changzhou
author_sort Hua, Hui
collection PubMed
description Herein, we report a simple yet efficient self-sacrifice template protocol to smartly fabricate hollow hetero-Ni(7)S(6)/Co(3)S(4) nanoboxes (Ni-Co-S NBs). Uniform nickel cobalt carbonate nanocubes are first synthesized as the precursor via solvothermal strategy, and subsequently chemically sulfidized into hollow heter-Ni-Co-S NBs through anion-exchange process. When evaluated as electrode for electrochemical capacitors (ECs), the resultant hetero-Ni-Co-S NBs visually exhibit attractive pesudo-capacitance in KOH just after continuously cyclic voltammetry (CV) scanning for 100 cycles. New insights into the underlying energy-storage mechanism of the hollow hetero-Ni-Co-S electrode, based on physicochemical characterizations and electrochemical evaluation, are first put forward that the electrochemically induced phase transformation gradually occurrs during CV sweep from the hetero-Ni-Co-S to bi-component-active NiOOH and CoOOH, which are the intrinsic charge-storage phases for the appealing Faradaic capacitance (~677 F g(−1) at 4 A g(−1)) of hollow Ni-Co-S NBs at high rates after cycling. When further coupled with negative activated carbon (AC), the AC//hetero-Ni-Co-S asymmetric device with extended electrochemical window of 1.5 V demonstrates high specific energy density of ~31 Wh kg(−1). Of significance, we strongly envision that hollow design concept and new findings here hold great promise for enriching synthetic methodologies, and electrochemistry of complex metal sulfides for next-generation ECs.
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spelling pubmed-47500872016-02-18 Self-sacrifice Template Formation of Hollow Hetero-Ni(7)S(6)/Co(3)S(4) Nanoboxes with Intriguing Pseudo-capacitance for High-performance Electrochemical Capacitors Hua, Hui Liu, Sijia Chen, Zhiyi Bao, Ruiqi Shi, Yaoyao Hou, Linrui Pang, Gang Hui, Kwun Nam Zhang, Xiaogang Yuan, Changzhou Sci Rep Article Herein, we report a simple yet efficient self-sacrifice template protocol to smartly fabricate hollow hetero-Ni(7)S(6)/Co(3)S(4) nanoboxes (Ni-Co-S NBs). Uniform nickel cobalt carbonate nanocubes are first synthesized as the precursor via solvothermal strategy, and subsequently chemically sulfidized into hollow heter-Ni-Co-S NBs through anion-exchange process. When evaluated as electrode for electrochemical capacitors (ECs), the resultant hetero-Ni-Co-S NBs visually exhibit attractive pesudo-capacitance in KOH just after continuously cyclic voltammetry (CV) scanning for 100 cycles. New insights into the underlying energy-storage mechanism of the hollow hetero-Ni-Co-S electrode, based on physicochemical characterizations and electrochemical evaluation, are first put forward that the electrochemically induced phase transformation gradually occurrs during CV sweep from the hetero-Ni-Co-S to bi-component-active NiOOH and CoOOH, which are the intrinsic charge-storage phases for the appealing Faradaic capacitance (~677 F g(−1) at 4 A g(−1)) of hollow Ni-Co-S NBs at high rates after cycling. When further coupled with negative activated carbon (AC), the AC//hetero-Ni-Co-S asymmetric device with extended electrochemical window of 1.5 V demonstrates high specific energy density of ~31 Wh kg(−1). Of significance, we strongly envision that hollow design concept and new findings here hold great promise for enriching synthetic methodologies, and electrochemistry of complex metal sulfides for next-generation ECs. Nature Publishing Group 2016-02-11 /pmc/articles/PMC4750087/ /pubmed/26865246 http://dx.doi.org/10.1038/srep20973 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Hua, Hui
Liu, Sijia
Chen, Zhiyi
Bao, Ruiqi
Shi, Yaoyao
Hou, Linrui
Pang, Gang
Hui, Kwun Nam
Zhang, Xiaogang
Yuan, Changzhou
Self-sacrifice Template Formation of Hollow Hetero-Ni(7)S(6)/Co(3)S(4) Nanoboxes with Intriguing Pseudo-capacitance for High-performance Electrochemical Capacitors
title Self-sacrifice Template Formation of Hollow Hetero-Ni(7)S(6)/Co(3)S(4) Nanoboxes with Intriguing Pseudo-capacitance for High-performance Electrochemical Capacitors
title_full Self-sacrifice Template Formation of Hollow Hetero-Ni(7)S(6)/Co(3)S(4) Nanoboxes with Intriguing Pseudo-capacitance for High-performance Electrochemical Capacitors
title_fullStr Self-sacrifice Template Formation of Hollow Hetero-Ni(7)S(6)/Co(3)S(4) Nanoboxes with Intriguing Pseudo-capacitance for High-performance Electrochemical Capacitors
title_full_unstemmed Self-sacrifice Template Formation of Hollow Hetero-Ni(7)S(6)/Co(3)S(4) Nanoboxes with Intriguing Pseudo-capacitance for High-performance Electrochemical Capacitors
title_short Self-sacrifice Template Formation of Hollow Hetero-Ni(7)S(6)/Co(3)S(4) Nanoboxes with Intriguing Pseudo-capacitance for High-performance Electrochemical Capacitors
title_sort self-sacrifice template formation of hollow hetero-ni(7)s(6)/co(3)s(4) nanoboxes with intriguing pseudo-capacitance for high-performance electrochemical capacitors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4750087/
https://www.ncbi.nlm.nih.gov/pubmed/26865246
http://dx.doi.org/10.1038/srep20973
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