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Hybrid Transition Metal Dichalcogenide/Graphene Microspheres for Hydrogen Evolution Reaction

机译:杂交过渡金属二甲基化物/石墨烯微球用于氢进化反应

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摘要

A peculiar 3D graphene-based architecture, i.e., partial reduced-Graphene Oxide Aerogel Microspheres (prGOAM), having a dandelion-like morphology with divergent microchannels to implement innovative electrocatalysts for the hydrogen evolution reaction (HER) is investigated in this paper. prGOAM was used as a scaffold to incorporate exfoliated transition metals dichalcogenide (TMDC) nanosheets, and the final hybrid materials have been tested for HER and photo-enhanced HER. The aim was to create a hybrid material where electronic contacts among the two pristine materials are established in a 3D architecture, which might increase the final HER activity while maintaining accessible the TMDC catalytic sites. The adopted bottom-up approach, based on combining electrospraying with freeze-casting techniques, successfully provides a route to prepare TMDC/prGOAM hybrid systems where the dandelion-like morphology is retained. Interestingly, the microspherical morphology is also maintained in the tested electrode and after the electrocatalytic experiments, as demonstrated by scanning electron microscopy images. Comparing the HER activity of the TMDC/prGOAM hybrid systems with that of TMDC/partially reduced-Graphene Oxide (prGO) and TMDC/Vulcan was evidenced in the role of the divergent microchannels present in the 3D architecture. HER photoelectron catalytic (PEC) tests have been carried out and demonstrated an interesting increase in HER performance.
机译:基于特殊的3D石墨烯基体系结构,即部分二氧化石墨烯氧化物气体微球(PRGOAM),其具有与发散微通道的蒲公英形态,以实施用于氢化反应(她)的创新电催化剂。 PRGOAM用作支架,以掺入灭绝的过渡金属二甲烷(TMDC)纳米液,并且最终的杂交材料已经过测试,并为她进行了光学增强。目的是创造一种混合材料,其中两个原始材料中的电子触点在3D架构中建立,这可能在维持可接受的TMDC催化位点的同时增加最终的活动。采用的自下而上的方法基于与冷冻铸造技术相结合的电喷雾,成功提供了一种制备蒲公英形态的载体形态的制备TMDC / PRGoAM混合系统的途径。有趣的是,通过扫描电子显微镜图像证明,微球体形态也保持在测试电极和电催化实验之后。在3D架构中存在的发散微通道的作用,证明了与TMDC /部分还原 - 氧化石墨烯(PRGO)和TMDC / VULCAN的作用进行了比较了TMDC / PRGOM杂交系统的活性。已经进行了她的光电子催化(PEC)测试,并证明了她性能的有趣增加。

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