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Electrosynthesis of Well-Defined Metal-Organic Framework Films and the Carbon Nanotube Network Derived from Them toward Electrocatalytic Applications

机译:微明的金属 - 有机骨架薄膜和碳纳米管网络融合在电催化作用中的电气结合

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摘要

An efficient and controllable method to synthesize continuous metal-organic framework (MOF) films is highly desired. Herein, we demonstrate a facile and universal electrochemical method to synthesize homogeneous and uniform zeolitic imidazolate framework (ZIF, a typical class of MOF family) films on various macroconductive substrates (e.g., conductive glass, Ni foam and carbon cloth) as well as nanostructured substrates (one-dimensional nano-rod array, two-dimensional nanowall array, and three-dimensional nanoframework). Particularly, the MOF film can be easily transformed into hierarchical ordered carbon nanotube networks, which display multifunctional electrocatalytic performances, such as excellent activity and good long-term stability in overall water splitting and oxygen reduction. It is worth mentioning that this is the first reported work for electrosynthesis of ZIF films on various conductive substrates, illustrating the great potential of the fast and economical method for constructing functional and integrated films or electrodes toward energy-related applications.
机译:非常需要一种有效可控的合成连续金属有机框架(MOF)膜的方法。在此,我们证明了一种容易和通用的电化学方法,用于在各种宏导底板(例如,导电玻璃,Ni泡沫和碳布)以及纳米结构基板上合成均匀和均匀的沸石咪唑酯骨架(ZIF,典型的MOF系列)膜,以及纳米结构基板(一维纳米杆阵列,二维纳米墙阵列和三维纳米ramework)。特别地,MOF膜可以容易地转化为分层有序的碳纳米管网络,其显示多功能电催化性能,例如优异的活性和整个水分裂和氧还原的良好的长期稳定性。值得一提的是,这是ZIF薄膜在各种导电基板上的第一个据报道的工作,示出了用于构建功能和集成膜或电极朝向能量相关应用的快速和经济方法的巨大潜力。

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