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Title Graphene-based membranes for mass transport applications / editors: Hongwei Zhu, Pengzhan Sun.

Publication Info. Cambridge, England : Royal Society of Chemistry, 2018.
©2019

Item Status

Description 1 online resource : illustrations.
Physical Medium polychrome
Description text file
Series Nanoscience & Nanotechnology Series, 1757-7144 ; no. 47
RSC nanoscience & nanotechnology ; no. 47.
Bibliography Includes bibliographical references and index.
Contents Cover; Preface; Contents; Chapter 1: Current State-of-the-art Membrane Based Filtration and Separation Technologies; 1.1 Introduction; 1.2 Membrane Based Separation Processes; 1.2.1 Microfiltration and Ultrafiltration; 1.2.2 Nanofiltration; 1.2.2.1 Aqueous Nanofiltration; 1.2.2.2 Organic Solvent Nanofiltration; 1.2.3 Desalination; 1.2.3.1 Reverse Osmosis; 1.2.3.2 Membrane Distillation; 1.2.4 Pervaporation; 1.2.5 Gas Separation; References; Chapter 2: Graphene-based Membranes; 2.1 Introduction; 2.2 Porous Graphene Membranes; 2.2.1 Perfect Single-layer Graphene.
2.2.2 Molecular Simulation Studies2.2.3 Experimental Studies; 2.3 Graphene Laminate Membranes; 2.3.1 Fabrication Methods; 2.3.2 Tuning Nanostructures; 2.3.3 Separation Applications; 2.4 Graphene Hybrid Membranes; 2.4.1 Graphene Oxide/Polymer Hybrid Membranes; 2.4.2 Graphene Oxide/MOF Hybrid Membranes; 2.5 Conclusions; Acknowledgments; References; Chapter 3: Mass Transport Across Atomically Thin Membranes; 3.1 Introduction; 3.2 Gas Transport Across Porous Graphene Membranes; 3.3 Liquid Transport Across Porous Graphene Membranes; 3.3.1 Water Transport Across Porous Graphene Membranes.
3.3.2 Ion Transport Across Nanoporous Graphene3.4 Proton and Atomic Species Transport Across Atomically Thin Membranes; 3.5 Conclusion; Acknowledgments; References; Chapter 4: Selective Mass Transport Properties of Graphene Oxide Lamellar Membranes; 4.1 Transport Properties of Water Through GO Membranes; 4.2 Transport Properties of Dissolved Solutes in Water Through GO Membranes; 4.3 Transport Properties of Gas Atoms and Molecules Through GO Membranes; 4.4 Concluding Remarks; References; Chapter 5: Mechanisms of Selective Mass Transport through Graphene Oxide Membranes; 5.1 Introduction.
5.1.1 Selective Fluidic Transport in Nanoscale Channels5.1.2 Graphene Oxides and Graphene Oxide Membranes; 5.2 Mechanisms of Selective Mass Transport; 5.2.1 Liquid; 5.2.2 Gas; 5.2.3 Ions; 5.3 Perspectives; References; Chapter 6: Mass Transport Properties of Composite Membranes Containing Graphene Oxide Nanosheets; 6.1 Introduction; 6.2 Mass Transport Through Graphene Oxide/Polymer Composite Membranes; 6.2.1 GO Laminate Embedded in Polymeric Membrane; 6.2.1.1 Gas Separation; 6.2.1.2 Fuel Cell Exchange Membrane; 6.2.1.3 Liquid Separation (Ultrafiltration, Nanofiltration and Pervaporation).
6.2.2 Polymer Molecular Modified GO Membrane6.3 Mass Transport Through Graphene Oxide/Nanoparticle Composite Membranes; 6.4 Mass Transport Through Graphene Oxide/Nanowire or Nanotube Composite Membranes; 6.4.1 Graphene Oxide/Nanowire Composite Membranes; 6.4.2 Graphene Oxide/Carbon Nanotube Composite Membranes; 6.5 Mass Transport Through Graphene Oxide/Other Inorganic Nanosheet Composite Membranes; 6.6 Conclusion; References; Chapter 7: Graphene-based Membranes for Barrier Applications; 7.1 Introduction; 7.2 Barrier Membranes Based on Perfect Graphene Lattice.
Summary A comprehensive overview of graphene-based membrane materials and its applications.
Local Note eBooks on EBSCOhost EBSCO eBook Subscription Academic Collection - North America
Subject Graphene.
Graphene.
Membranes (Technology)
Membranes (Technology)
Nanoscience.
Nanoscience.
Genre/Form Electronic books.
Added Author Zhu, Hongwei, editor.
Sun, Pengzhan, editor.
Other Form: Print version : 9781782629399
ISBN 9781788013017 (electronic book)
1788013018 (electronic book)
9781788015318
1788015312
1788013018
9781782629399
1782629394