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Exploring precursor effect in in-situ reconstruction of Bi metal organic-frameworks during CO_(2)electroreduction reaction to tailor formate selectivity towards 100%
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作者 Zhida Liu Qikui Fan +3 位作者 Hang Huo fanglei yao Xiaoping Gao Jin Wang 《Science China Chemistry》 SCIE EI CAS CSCD 2024年第7期2190-2198,共9页
Bi-based metal-organic frameworks(Bi-MOFs)as efficient catalysts for the CO_(2)electroreduction reaction(CRR)have been extensively investigated.It has been established that Bi-MOFs usually undergo in-situ transformati... Bi-based metal-organic frameworks(Bi-MOFs)as efficient catalysts for the CO_(2)electroreduction reaction(CRR)have been extensively investigated.It has been established that Bi-MOFs usually undergo in-situ transformation during the CRR,ultimately converting into Bi nanostructures.However,the effect of the MOF precursors on the structure of the derived Bi catalysts and consequently on their electrocatalytic properties has not been clearly elucidated.In this work,we prepared four variants of a novel Bi-MOF with different morphologies and dimensions,and explored the effects of the precursors on the resulting Bi catalysts and their CRR performance.A precursor-dependent in-situ transformation and its profound impact on tuning the CO_(2)-formate FE towards~100%have been revealed.Among the four examined variants,Bi-MOF with nanocube-like morphology(BiMOF-NC)is transformed into thin and flat Bi nanosheets capable of successfully enveloping the fibers of carbon paper(working electrode),while the other three variants with increased size and dodecahedral/octahedral geometry have been transformed into Bi nanoflowers,exposing a fair portion of the carbon fibers in the working electrode.Furthermore,the transformation rate was found to be dependent on the precursors and BiMOF-NC exhibited the highest rate of reconstruction compared with other samples.Consequently,the Bi catalyst derived from BiMOF-NC delivered a selectivity for the formate product of nearly 100%at-1.2 V(vs.reversible hydrogen electrode(RHE))and of over 95%in a wide potential range due to efficient suppression of the competing hydrogen evolution reaction(HER)over carbon fibers.The in-situ transformed BiMOFNC also demonstrated equivalently high formate selectivity at large current densities(≥100 mA cm^(-2))in flow cell reactors as that in H-type reactors,underscoring its potential for industrial applications.This work highlights the necessity of finely tuning the structural features of MOF precursors to achieve optimized electrocatalytic performance. 展开更多
关键词 Bi-MOFs precursor effect in-situ transformation Bi nanosheets CO_(2)-to-formate
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氢键有机框架材料在电化学能源存储和转换中的研究进展 被引量:4
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作者 方晨晨 许雪凤 +6 位作者 张校源 代黎明 姚方磊 张文耀 付永胜 孙敬文 朱俊武 《科学通报》 EI CAS CSCD 北大核心 2023年第25期3335-3352,共18页
作为一种新型的多孔材料,氢键有机框架(hydrogen-bonded organic frameworks,HOFs)结构因其丰富的孔道分布、可控的晶体构型以及易于调节的分子组成而表现出诸多优异的电化学特性,如快速的离子传输、特异性的离子筛分、可观的电化学活... 作为一种新型的多孔材料,氢键有机框架(hydrogen-bonded organic frameworks,HOFs)结构因其丰富的孔道分布、可控的晶体构型以及易于调节的分子组成而表现出诸多优异的电化学特性,如快速的离子传输、特异性的离子筛分、可观的电化学活性面积、高暴露的催化活性位点等.这些特性促使研究者越来越多地关注其在电化学能源存储和转换技术中的应用,是能源领域研究的前沿和热点.尽管这些HOFs相关材料的结构和组成各不相同,总体上却可以分为HOFs和HOFs衍生物两大类.本文详细地介绍了HOFs及其衍生物作为电极材料或电催化剂在电化学领域,包括可充电离子电池、电化学超级电容器、电催化析氢、电催化析氧和氧还原反应中的应用原理与最新研究进展.在此基础上,重点阐述了HOFs相关材料的纳米形貌、晶体结构、孔道结构和分子组成对其电化学性能的影响,总结了克服HOFs相关材料氢键骨架稳定性和导电性差的相关方法,凝练了它们在该领域发展中的优势和挑战.基于上述讨论,希望对HOFs相关材料在电化学能源存储和转换技术中的发展提供新的研究方向. 展开更多
关键词 氢键有机框架 锂/钠离子电池 超级电容器 析氧反应 氧还原反应 析氢反应
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Supramolecular assembly-derived carbon-nitrogen-based functional materials for photo/electrochemical applications: progress and challenges
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作者 fanglei yao Chenchen Fang +8 位作者 Junjie Cui Liming Dai Xiaoyuan Zhang Liang Xue Pan Xiong Yongsheng Fu Wenyao Zhang Jingwen Sun Junwu Zhu 《National Science Open》 2023年第4期1-37,共37页
Supramolecular chemistry during the synthesis of carbon-nitrogen-based materials has recently experienced a renaissance in the arena of photocatalysis and electrocatalysis.In this review,we start with the discussion o... Supramolecular chemistry during the synthesis of carbon-nitrogen-based materials has recently experienced a renaissance in the arena of photocatalysis and electrocatalysis.In this review,we start with the discussion of supramolecular assemblies-derived carbon-nitrogen-based materials’regulation from the aspect of morphology,chemical composition,and micro/nanostructural control.Afterwards the recent advances of these materials in energy and environment related applications,including degradation of pollutants,water splitting,oxygen reduction reactions,CO_(2) reduction reactions along with organic synthesis are summarized.The correlations between the structural features and physicochemical properties of the carbonnitrogen-based materials and the specific catalytic activity are discussed in depth.By highlighting the opportunities and challenges of supramolecular assembly strategies,we attempt an outlook on possible future developments for highly efficient carbon-based photo/electrocatalysts. 展开更多
关键词 supramolecular assembly carbon carbon nitride PHOTOCATALYSIS ELECTROCATALYSIS
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