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Unraveling the reaction mechanism of low dose Mn dopant in Ni(OH)_(2) supercapacitor electrode 被引量:2
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作者 Zhiguo Zhang Hua Huo +5 位作者 Zhenjiang Yu Lizhi Xiang Bingxing Xie Chunyu Du Jiajun Wang Geping Yin 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第10期497-506,I0013,共11页
Mn doping is deemed as a promising strategy to improve the electrochemical performance of the a-Ni(OH)_(2)battery-type supercapacitor electrode.However,the internal structure evolution,the pathways and the dynamics of... Mn doping is deemed as a promising strategy to improve the electrochemical performance of the a-Ni(OH)_(2)battery-type supercapacitor electrode.However,the internal structure evolution,the pathways and the dynamics of the proton/intercalated anion migration,as well as the functioning mechanism of Mn dopant to stabilize the layered structure during cycles remain unclear.Here,we unveil that irreversible oxidization of Mn^(3+)at the initial CV cycles,which will remain as Mn^(4+)in the NiO_(2)slabs after the first oxidization to effectively suppress the phase transformation fromα-Ni(OH)_(2)/γ-NiOOH toβ-Ni(OH)_(2)/β-NiOOH and further maintain the structural integrity of electrode.With a synergistic combination of theoretical calculations and various structural probes including XRD and^(2)H MAS solid state NMR,we decode the structure evolution and dynamics in the initial CV(cyclic voltammetry)cycles,including the absorption/desorption of hydrogen containing species,migration of intercalated anions/water molecules and the change of interlayer space.This present work elucidates a close relationship between doping chemistry and structural reliability,paving a novel way of reengineering supercapacitor electrode materials. 展开更多
关键词 Reaction mechanism Structure evolution ^(2)h MAS NMR layered double hydroxides Local environments
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即时合成层状双氢氧化物处理亮蓝模拟废水的研究 被引量:4
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作者 吕品 彭书传 +1 位作者 刘国栋 安志环 《安徽农业大学学报》 CAS CSCD 北大核心 2009年第1期140-143,共4页
研究镁-铝盐水解共沉淀法即时合成层状双氢氧化物(LDH)去除偶氮类染料亮蓝的效果及其影响因素。其净化机理是,混合溶液在NaOH快速滴加的同时,溶液中Mg2+、A l3+水解共沉淀形成LDH,染料阴离子以平衡LDH结构电荷的形式进入LDH结构层间,含... 研究镁-铝盐水解共沉淀法即时合成层状双氢氧化物(LDH)去除偶氮类染料亮蓝的效果及其影响因素。其净化机理是,混合溶液在NaOH快速滴加的同时,溶液中Mg2+、A l3+水解共沉淀形成LDH,染料阴离子以平衡LDH结构电荷的形式进入LDH结构层间,含有亮蓝的LDH通过沉淀分离从溶液中去除。在亮蓝溶液的浓度为800mg.L-1时,镁-铝盐水解共沉淀法即时合成LDH对其去除率可高达99%。正交试验及极差分析结果表明,即时合成LDH处理亮蓝废水的最佳试验条件为:pH8.5,温度80℃,时间对其影响的显著性不大,此条件下去除率达到99.81%。 展开更多
关键词 即时合成 层状双氢氧化物 染料 水解共沉淀
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