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Related Concept Videos

Membrane Asymmetry Regulating Transporters01:19

Membrane Asymmetry Regulating Transporters

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Enzymes like flippase, floppase, and scramblase transfer phospholipids from one layer to another in the membrane, thereby affecting membrane asymmetry.
Flippase
Eukaryotic flippases are type-IV P-type ATPases or P4-ATPases belonging to P-type ATPase family proteins that are membrane-bound pumps involved in the ATP-mediated transport of ions and molecules across the membrane. Flippases flip specific phospholipids from the outer to the inner leaflet of a membrane. All P4-ATPases have one...
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Electrophoretic Crystallization of Ultrathin High-performance Metal-organic Framework Membranes
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Two-Dimensional Materials as Prospective Scaffolds for Mixed-Matrix Membrane-Based CO2 Separation.

Xiang Zhu1, Chengcheng Tian2, Chi-Linh Do-Thanh1

  • 1Department of Chemistry, University of Tennessee, Knoxville, TN, 37916, USA.

Chemsuschem
|August 11, 2017
PubMed
Summary

This review highlights advanced 2D materials for mixed-matrix membranes (MMMs) used in CO2 separation. These materials offer promising solutions for environmental remediation and clean energy applications.

Keywords:
CO2 separationmixed-matrix membranesnanosheetstwo-dimensional materials

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Area of Science:

  • Materials Science
  • Chemical Engineering
  • Environmental Science

Background:

  • Membrane technology is crucial for CO2 separation in environmental remediation and clean energy.
  • Two-dimensional (2D) materials offer precise structures ideal for developing advanced mixed-matrix membranes (MMMs).

Purpose of the Study:

  • To review recent breakthroughs in synthesizing 2D-material-based MMMs for CO2 separation.
  • To provide a comprehensive summary of 2D materials used in MMMs for gas separation.

Main Methods:

  • Review of synthesis processes for 2D materials like graphene oxide (GO), MOF-derived nanosheets, COFs, and TMDs.
  • Analysis of gas separation properties of these 2D-material-based MMMs.

Main Results:

  • 2D materials such as GO, MOF-derived nanosheets, COFs, and TMDs are effective building blocks for CO2 separation MMMs.
  • The review details synthesis methods and evaluates the gas separation performance of various 2D-material MMMs.

Conclusions:

  • 2D-material-based MMMs represent a significant advancement in CO2 separation technology.
  • Future opportunities lie in developing novel synthetic 2D materials for next-generation MMMs.