4.8 Review

Ultrathin Membranes for Separations: A New Era Driven by Advanced Nanotechnology

Journal

ADVANCED MATERIALS
Volume 34, Issue 21, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202108457

Keywords

fabrication-structure-transport relationship; membrane transport pathways; nanomaterials; nanotechnology; separation; ultrathin membranes

Funding

  1. Ministry of Education of its Tier 1 Grant [R-279-000-571-279]
  2. Key Research and Development Program of Zhejiang Province [2021C03173]
  3. National Natural Science Foundation of China [91934302, 21961142013, 22008172]

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This article provides an overview of ultrathin membranes and their fabrication techniques, as well as a discussion of different types of ultrathin membranes based on their structures. The interplays among structure, fabrication methods, and separation performances are highlighted. The performances and applications of current ultrathin membranes for representative separations are thoroughly analyzed and compared. Challenges in material design and structure construction are also addressed to facilitate the translation from scientific achievements to industrial productions.
Ultrathin membranes are at the forefront of membrane research, offering great opportunities in revolutionizing separations with ultrafast transport. Driven by advanced nanomaterials and manufacturing technology, tremendous progresses are made over the last 15 years in the fabrications and applications of sub-50 nm membranes. Here, an overview of state-of-the-art ultrathin membranes is first introduced, followed by a summary of the fabrication techniques with an emphasis on how to realize such extremely low thickness. Then, different types of ultrathin membranes, categorized based on their structures, that is, network, laminar, or framework structures, are discussed with a focus on the interplays among structure, fabrication methods, and separation performances. Recent research and development trends are highlighted. Meanwhile, the performances and applications of current ultrathin membranes for representative separations (gas separation and liquid separation) are thoroughly analyzed and compared. Last, the challenges in material design, structure construction, and coordination are given, in order to fully realize the potential of ultrathin membranes and facilitate the translation from scientific achievements to industrial productions.

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