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Recent Advances in the Synthesis of Layered, Double-Hydroxide-Based Materials and Their Applications in Hydrogen and Oxygen Evolution

机译:层状双氢基材料的合成及其在制氢和制氧中的应用的最新进展

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摘要

Layered double hydroxides (LDHs) consist of brucite-like layers containing hydroxides of two or more different kinds of metal cations. These positively charged layers are neutralized by exchangeable anions in the interlayer galleries. LDH-based materials have substantial potential in efficient energy (e.g., H-2, O-2) generation. Over the last few decades, tremendous progress has been made toward developing LDH-based materials for H-2 and O-2 evolution, for which the performance of LDH-based materials is closely related to the synthesis method. This minireview initially outlines the recent advances in the synthesis of LDH-based materials. The advantages and challenges of the protocols in tuning the properties of the material are also discussed and highlighted. The application section concentrates on the most recent progress in photocatalytic H-2 generation and photocatalytic and electrocatalytic O-2 evolution. By taking advantage of the flexible tunability and uniform distribution of metal cations in the brucite-like layers or the intercalated anions in the interlayer space, LDH-based materials exhibit attractive properties in the generation of H-2 and O-2 with advantages such as improved light absorption, enhanced charge separation, better electron transfer, promoted electrode reaction kinetics, and high durability.
机译:层状双氢氧化物(LDHs)由类似水镁石的层组成,含有两种或更多种不同金属阳离子的氢氧化物。这些带正电的层被层间通道中的可交换阴离子中和。基于LDH的材料在有效能源(例如H-2,O-2)的产生方面具有巨大潜力。在过去的几十年中,在开发用于H-2和O-2进化的基于LDH的材料方面已经取得了巨大的进步,基于LDH的材料的性能与合成方法密切相关。这份小型审查最初概述了基于LDH的材料合成的最新进展。还讨论并强调了协议在调整材料特性方面的优点和挑战。应用程序部分集中在光催化H-2生成以及光催化和电催化O-2演变方面的最新进展。通过利用在水镁石状层或层间空间中的插层阴离子中金属阳离子的灵活可调性和均匀分布,基于LDH的材料在H-2和O-2的生成中表现出诱人的特性,具有以下优点:改进的光吸收,增强的电荷分离,更好的电子转移,增强的电极反应动力学和高耐久性。

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