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Yimeng Song

Researcher at Tianjin University

Publications -  34
Citations -  1015

Yimeng Song is an academic researcher from Tianjin University. The author has contributed to research in topics: Membrane & Layer (electronics). The author has an hindex of 12, co-authored 22 publications receiving 572 citations.

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Covalent organic framework membranes through a mixed-dimensional assembly for molecular separations.

TL;DR: Rugby COF membranes with precise molecular sieving ability are reported through a mixed-dimensional assembly, exhibiting high performance for alcohol dehydration and salt rejection.
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Hybrid membranes for pervaporation separations

TL;DR: A comprehensive overview on hybrid membranes for pervaporation separations can be found in this paper, where five classes of fabrications methods of hybrid membranes are extensively summarized and two typical transport mechanisms of hybrid membrane in pervapore are introduced.
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Highly water-selective membranes based on hollow covalent organic frameworks with fast transport pathways

TL;DR: In this paper, a facile template-directed approach is exploited for constructing hollow COF nanospheres for constructing water-selective hybrid membranes, where an imine-linked COF TpBD, derived from 1,3,5-triformylphloroglucinol (Tp) and benzidine (BD), was selected as the building block due to its rich hydrophilic groups and high stability.
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Embedding Ag+@COFs within Pebax membrane to confer mass transport channels and facilitated transport sites for elevated desulfurization performance

TL;DR: In this paper, covalent organic frameworks (COFs) are utilized as carriers to immobilize metal ions in facilitated transport membranes for organic solvent separation for the first time, which greatly intensified the mass transfer of unsaturated penetrant molecules (thiophene) by π-complexation.
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Ultrapermeable graphene oxide membranes with tunable interlayer distances via vein-like supramolecular dendrimers

TL;DR: In this paper, a vein-like supramolecular dendrimers were used as crosslinkers to tune the interlayer distance of a 2D nanosheet separation membrane.