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介观结构层状材料:自支撑介孔层状双氢氧化物纳米管

Mesostructuring layered materials: self-supported mesoporous layered double hydroxide nanotubes.

作者信息

Morais Alysson F, Nanclares Dimy, Silva Ivan G N, Duarte Alfredo, Garcia Fernando A, Breynaert Eric, Mustafa Danilo

机构信息

Instituto de Física da Universidade de São Paulo, 05508-090, São Paulo, SP, Brazil.

出版信息

Nanoscale. 2021 Jul 15;13(27):11781-11792. doi: 10.1039/d1nr02477a.

Abstract

Synthesis of layered materials exhibiting hierarchical porosity remains challenging, but nevertheless worthwhile because it turns such solids into functional materials with high specific surface area. Using a soft-templating strategy in combination with the incorporation of 8-fold coordinated Eu3+, self-assembly of self-supported layered double hydroxide (LDH) nanotubes has been achieved. Heteromorphic equimolar substitution of Al3+ by Eu3+ in Zn2+/Al3+ LDH solids intercalated with 1,3,5-benzenetricarboxylate anions (BTC) assists precipitation of the double hydroxide layers onto the convex surface of Pluronic® P-123 worm-like micelles, yielding multilayer cylinders of BTC-intercalated LDHs. Removal of the micellar template is easily achieved by liquid extraction with methanol, yielding a network of interconnected, well-defined, self-supported, multi-walled, hollow cylindrical nanotubes. Removal of Eu3+ from the synthesis disables formation of the nanotubular morphology, but still yields LDHs containing a network of embedded mesopores, resulting in a specific surface area that is 5-fold higher as compared to standard LDHs.

摘要

合成具有分级孔隙率的层状材料仍然具有挑战性,但尽管如此仍值得一试,因为这能将此类固体转变为具有高比表面积的功能材料。通过采用软模板策略并结合引入八配位的Eu3+,已实现了自支撑层状双氢氧化物(LDH)纳米管的自组装。在插层有1,3,5-苯三甲酸根阴离子(BTC)的Zn2+/Al3+ LDH固体中,Eu3+对Al3+进行异质等摩尔取代,有助于双氢氧化物层沉淀到普朗尼克® P-123蠕虫状胶束的凸面上,从而生成插层有BTC的LDH多层圆柱体。通过用甲醇进行液体萃取可轻松去除胶束模板,得到由相互连接、定义明确、自支撑、多壁的中空圆柱形纳米管组成的网络。从合成过程中去除Eu3+会阻止纳米管形态的形成,但仍会生成含有嵌入介孔网络的LDH,其比表面积比标准LDH高5倍。

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