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基于层状双氢氧化物的纳米材料作为高效催化剂和吸附剂。

Layered double hydroxide-based nanomaterials as highly efficient catalysts and adsorbents.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, 100029, PR China.

出版信息

Small. 2014 Nov;10(22):4469-86. doi: 10.1002/smll.201401464. Epub 2014 Aug 18.

Abstract

Layered double hydroxides (LDHs) are a class of anion clays consisting of brucite-like host layers and interlayer anions, which have attracted increasing interest in the fields of catalysis/adsorption. By virtue of the versatility in composition, morphology, and architecture of LDH materials, as well as their unique structural properties (intercalation, topological transformation, and self-assembly with other functional materials), LDHs display great potential in the design and fabrication of nanomaterials applied in photocatalysis, heterogeneous catalysis, and adsorption/separation processes. Taking advantage of the structural merits and various control synthesis strategies of LDHs, the active center structure (e.g., crystal facets, defects, geometric and electronic states, etc.) and macro-nano morphology can be facilely manipulated for specific catalytic/adsorbent processes with largely enhanced performances. In this review, the latest advancements in the design and preparation of LDH-based functional nanomaterials for sustainable development in catalysis and adsorption are summarized.

摘要

层状双氢氧化物(LDHs)是一类由水镁石型主体层和层间阴离子组成的阴离子粘土,在催化/吸附领域引起了越来越多的关注。由于 LDH 材料在组成、形态和结构上的多功能性,以及其独特的结构特性(插层、拓扑转变和与其他功能材料的自组装),LDHs 在设计和制造应用于光催化、多相催化和吸附/分离过程的纳米材料方面显示出巨大的潜力。利用 LDHs 的结构优点和各种控制合成策略,可以轻松地操纵活性中心结构(例如,晶体面、缺陷、几何和电子状态等)和宏观-纳米形态,以实现具有大大增强性能的特定催化/吸附过程。本综述总结了用于可持续催化和吸附发展的基于 LDH 的功能纳米材料的设计和制备方面的最新进展。

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