Physical aging in glassy mixed matrix membranes; tuning particle interaction for mechanically robust nanocomposite films

Author:

Smith Stefan J. D.12345,Lau Cher Hon564,Mardel James I.564,Kitchin Melanie56478,Konstas Kristina564,Ladewig Bradley P.564910,Hill Matthew R.12345

Affiliation:

1. Monash University

2. Department of Chemical Engineering

3. Clayton

4. Australia

5. CSIRO, Manufacturing

6. Clayton South MDC

7. Centre for Advanced Nanomaterials

8. The School of Chemistry & Physics

9. Barrer Centre, Department of Chemical Engineering

10. Imperial College London

Abstract

Addressing the mechanical weakness and physical aging of glassy mixed matrix membranes to realise their potential for enhancing the separation performance of current membrane technologies.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry

Reference75 articles.

1. Materials for Separation Technologies: Energy and Emission Reduction Opportunities, U.S. Department of Energy, Office of Energy Efficiency and Renewable Energy, 2005

2. Opportunities and challenges in carbon dioxide capture

3. Metal–organic framework based mixed matrix membranes: a solution for highly efficient CO2 capture?

4. Power plant post-combustion carbon dioxide capture: An opportunity for membranes

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