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山梨酸插层Zn-Al双金属氢氧化物的超分子结构及热分解行为 被引量:5
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作者 孟锦宏 张慧 +1 位作者 D.G.Evans 段雪 《科学通报》 EI CAS CSCD 北大核心 2005年第18期1951-1956,共6页
以锌铝双金属氢氧化物(Zn-Al layered double hydroxides,ZnAl-LDHs)为主体,以食品防腐剂山梨酸(sorbic acid:SA)为客体,通过共沉淀自组装法合成了超分子结构有机-无机复合物山梨酸插层LDHs.运用综合分析方法,包括常规的X射线衍射(XRD)... 以锌铝双金属氢氧化物(Zn-Al layered double hydroxides,ZnAl-LDHs)为主体,以食品防腐剂山梨酸(sorbic acid:SA)为客体,通过共沉淀自组装法合成了超分子结构有机-无机复合物山梨酸插层LDHs.运用综合分析方法,包括常规的X射线衍射(XRD)、红外光谱(IR)和紫外-可见光谱(UV-Vis)测试及原位热重/差热/质谱(TG/DTA/MS)和原位高温X射线衍射(in situ HT-XRD)等表征技术,详细探讨了该插层化合物的超分子结构及热分解行为. 展开更多
关键词 状双金属氢氧化物 超分子插层结构 有机-无机复合物 共沉淀 山梨酸 热分解 金属氢氧化物 分子结构 化合物 热分解行为
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无机纳米阻燃剂通过鉴定
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《化工科技市场》 CAS 2003年第1期53-53,共1页
关键词 无机纳米阻燃剂 纳米氢氧化镁 超分子插层结构水滑石 抑烟性能 阻燃性能
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Critical roles of molybdate anions in enhancing capacitive and oxygen evolution behaviors of LDH@PANI nanohybrids 被引量:2
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作者 Qiang Hu Hua Wang +7 位作者 Feifei Xiang Qiaoji Zheng Xinguo Ma Yu Huo Fengyu Xie Chenggang Xu Dunmin Lin Jisong Hu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第6期980-993,共14页
Low-overpotential layered hydroxides(LDHs)with high theoretical capacity are promising electrodes for supercapaterry and oxygen evolution reaction;however,the low electronic conductivity and insufficient active sites ... Low-overpotential layered hydroxides(LDHs)with high theoretical capacity are promising electrodes for supercapaterry and oxygen evolution reaction;however,the low electronic conductivity and insufficient active sites of bulk LDHs increase the internal resistance and reduce the capacity and oxygen-production efficiency of electrodes.Herein,we prepared a polyaniline-coated Ni-Co-layered double hydroxide intercalated with MoO_(4)^(2−)(M-LDH@PANI)composite electrode using a two-step method.As the amount of MoO_(4)^(2−)in the LDH increases,acicular microspheres steadily evolve into flaky microspheres with a high surface area,providing more active electrochemical sites.Moreover,the amorphous PANI coating of M-LDH boosts the electronic conductivity of the composite electrode.Accordingly,the M-LDH@PANI at an appropriate level of MoO_(4)^(2−)exhibits significantly enhanced energy storage and catalytic performance.Experimental analyses and theoretical calculations reveal that a small amount of MoO_(4)^(2−)is conducive to the expansion of LDH interlayer spacing,while an excessive amount of MoO_(4)^(2−)combines with the H atoms of LDH,thus competing with OH^(−),resulting in reduced electrochemical performance.Moreover,M-LDH flaky microspheres can efficiently modulate deprotonation energy,greatly accelerating surface redox reactions.This study provides an explanation for an unconventional mechanism,and a method for the modification of LDH-based materials for anion intercalation. 展开更多
关键词 Layered hydroxide LDH PANI MoO_(4)^(2−) Intercalated hierarchical structures Supercapaterry Electrocatalyst
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