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纳米多孔材料。

Nanoporous materials.

作者信息

Polarz Sebastian, Smarsly B

机构信息

Max Planck Institute of Colloids and Interfaces, Research Campus Golm, D-14424 Potsdam, Germany.

出版信息

J Nanosci Nanotechnol. 2002 Dec;2(6):581-612. doi: 10.1166/153348802321105860.

Abstract

The current review article attempts to cover the field of nanoporous materials, thereby materials with voids of the order of 1 nm to 100 nm or even larger. Concepts, that have an effect on a more general basis, are introduced and the common features among the different classes of nanoporous materials are demonstrated enabling understanding their formation and stability. It is seen that the most successful method to produce nanoporous materials made by design is to imprint a template structure into a functional inorganic or even organic network. Further, the manuscript gives an introduction to state of the art overview for microporous, mesoporous and macroporous materials, while the preference lies on ordered pore structures. Further, it is demonstrated how important but also demanding the use of modern analytical techniques are. This makes the field of nanoporous materials truly interdisciplinary with aspects of inorganic chemistry, polymer science, colloid chemistry, physical chemistry, analytical chemistry and chemical engineering.

摘要

当前这篇综述文章试图涵盖纳米多孔材料领域,即孔隙尺寸在1纳米至100纳米甚至更大范围内的材料。文中引入了一些具有更普遍影响的概念,并展示了不同类别的纳米多孔材料之间的共同特征,以便理解它们的形成和稳定性。可以看出,通过设计制备纳米多孔材料最成功的方法是将模板结构印刻到功能性无机甚至有机网络中。此外,本文还介绍了微孔、介孔和大孔材料的最新研究概况,重点在于有序孔结构。此外,还展示了现代分析技术的使用既重要又具有挑战性。这使得纳米多孔材料领域真正成为一个跨学科领域,涉及无机化学、聚合物科学、胶体化学、物理化学、分析化学和化学工程等方面。

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