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层状多孔氨基硅质整体材料作为二氧化碳吸附剂。

Hierarchically porous aminosilica monolith as a CO2 adsorbent.

机构信息

Environmental Radioactivity Assessment Team, Korea Atomic Energy Research Institute , 989-111 Daedeok-daero, Yuseong-gu, Daejeon 305-353, Korea.

出版信息

ACS Appl Mater Interfaces. 2014 Aug 13;6(15):12988-96. doi: 10.1021/am5029022. Epub 2014 Jul 14.

Abstract

A facile strategy is successfully developed for the centimeter-scale preparation of hierarchically porous aminosilica monolith as a CO2 adsorbent just by simple processes of solvent-evaporation-induced coating, self-assembly, and concentration of tetraethyl orthosilicate sol on the surface of a polymer foam template without any adhesive composite material or hydrothermal treatment. (3-Aminopropyl) trimethoxysilane is immobilized on the surface of silica monolith via a gas-phase procedure. The silica frameworks of the monolith mimic those of the polymer foam template at the macroscale, and the frameworks are composed of the SBA-15 structure at the nanoscale. The hierarchically porous structure demonstrates improved properties over the single-mode porous component, with the macroporous framework ensuring mechanical stability and good mass transport properties, while the smaller pores provide the functionality for CO2 adsorption.

摘要

成功开发了一种简便策略,可通过简单的溶剂挥发诱导涂层、自组装以及在聚合物泡沫模板表面浓缩正硅酸乙酯溶胶的过程,厘米级规模制备分级多孔氨基硅质整体作为 CO2 吸附剂,而无需任何粘合剂复合材料或水热处理。(3-氨丙基)三甲氧基硅烷通过气相程序固定在二氧化硅整体的表面上。整体的二氧化硅骨架在宏观尺度上模拟聚合物泡沫模板,而骨架由纳米尺度的 SBA-15 结构组成。分级多孔结构表现出优于单模态多孔组分的性能,其中大孔骨架确保了机械稳定性和良好的传质性能,而较小的孔提供了 CO2 吸附的功能。

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