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AuthorLiu, Yupu
AuthorShen, Dengke
AuthorChen, Gang
AuthorElzatahry, Ahmed A.
AuthorPal, Manas
AuthorZhu, Hongwei
AuthorWu, Longlong
AuthorLin, Jianjian
AuthorAl-Dahyan, Daifallah
AuthorLi, Wei
AuthorZhao, Dongyuan
Available date2020-11-12T07:55:58Z
Publication Date2017
Publication NameAdvanced Materials
ResourceScopus
ISSN9359648
URIhttp://dx.doi.org/10.1002/adma.201702274
URIhttp://hdl.handle.net/10576/16983
AbstractMembrane separation technologies are of great interest in industrial processes such as water purification, gas separation, and materials synthesis. However, commercial filtration membranes have broad pore size distributions, leading to poor size cutoff properties. In this work, mesoporous silica thin membranes with uniform and large vertical mesochannels are synthesized via a simple biphase stratification growth method, which possess an intact structure over centimeter size, ultrathin thickness (≤50 nm), high surface areas (up to 1420 m2 g−1), and tunable pore sizes from ≈2.8 to 11.8 nm by adjusting the micelle parameters. The nanofilter devices based on the free‐standing mesoporous silica thin membranes show excellent performances in separating differently sized gold nanoparticles (>91.8%) and proteins (>93.1%) due to the uniform pore channels. This work paves a promising way to develop new membranes with well‐defined pore diameters for highly efficient nanosize‐based separation at the macroscale.
SponsorY.L. and D.S. contributed equally to this work. This work was supported by the State Key Basic Research Program of the PRC (2012CB224805, 2013CB934104, and 2016YFA0204000), Shanghai Science and Technology Committee (14JC1400700), and NSF of China (grant nos. 21210004 and 21603036). The authors extend their appreciation to the International Scientific Partnership Program ISPP at King Saud University for funding this research work through ISPP# 0018. The authors gratefully thank Guangrong Zhou from The Key Laboratory of Molecular Engineering of Polymer and Department of Macromolecule Science (Fudan University) for the structural characterization and data analysis.
Languageen
PublisherWiley-VCH Verlag
Subjectmembranes
mesoporous materials
nanofilters
separation
silica
vertical mesochannels
TitleMesoporous Silica Thin Membranes with Large Vertical Mesochannels for Nanosize-Based Separation
TypeArticle
Issue Number35
Volume Number29


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