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Mesoporous material - Wikipedia
Typical mesoporous materials include some kinds of silica and alumina that have similarly-sized mesopores. Mesoporous oxides of niobium, tantalum, titanium, zirconium, cerium and tin have …
Mesopore - an overview | ScienceDirect Topics
Ordered mesoporous materials such as MCM-41 [23] and FSM-16 [24] are relatively new materials that were first synthesized between 1990 and 1992 [25]. A mesopore is defined as a …
Microporous and Mesoporous Materials | Journal - ScienceDirect
Microporous and Mesoporous Materials covers novel and significant aspects of porous solids classified as either microporous (pore size up to 2 nm) or mesoporous (pore size 2 to 50 nm). …
Mesoporous Material - an overview | ScienceDirect Topics
Mesoporous materials are defined as porous inorganic solids with a pore diameter range of 2–50 nm. They can have a large variety of properties with respect to composition, pore shape and …
大孔(大小与其比表面的大小及吸附质分子的扩散有直接关系的孔…
孔性固体(吸附剂 和 催化剂) 孔 的大小与其 比表面 的大小及 吸附质 分子的 扩散 有直接关系。 大孔 (macropores),大于50nm; 中孔 (mesopores),2~50nm; 微孔 (micropores),小于2nm …
Mesoporous materials for energy conversion and storage devices
2016年5月4日 · Mesoporous materials have exceptional properties, including ultrahigh surface areas, large pore volumes, tunable pore sizes and shapes, and also exhibit nanoscale effects …
微孔、大孔、介孔是怎么分类的? - JWGB
国际纯粹与应用化学联合会(IUPAC)把粉体材料中的孔按尺寸分为微孔(Micropores):孔径<2nm;中孔或介孔(Mesopores):孔径2~50nm;大孔(Macropores):孔径>50nm。
Single-micelle-directed synthesis of mesoporous materials
2019年10月7日 · In this Review, we outline the preparation of single-micelle architectures and the single-micelle-directed synthesis of mesoporous materials, including low-dimensional and 3D …
Functional Ordered Mesoporous Materials: Present and Future
2022年4月8日 · The atomically flat graphene layers with mesopores provide high surface area for Li ion adsorption and intercalation, while the ordered mesopores perpendicular to the …
Hot Topic: Mesoporous Materials - Wiley Online Library
2018年7月2日 · Interest in mesoporous materials (IUPAC definition: pore size 2–50 nm) has developed dramatically over the last few years, not least because the pore structure of these …