ENGLISH

Functional Membranes for High Efficiency Molecule and Ion Transport

Book information

Publisher
Science Press
Year
2023
ISBN
9789811981548
Language
english
Format
PDF
Filesize
15 MB (15665345 bytes)
Pages
305\306
Time added
2023-01-25 14:04:27

Description

This book provides an overview of functional membranes for efficient ion/molecule transfer and separation. It first presents the design, fabrication, structure, and performance of several kinds of membranes. Then, the application of membrane technology in organic solvent nanofiltration, hydrogen fuel cells, and solid-state lithium batteries is introduced. Furthermore, the book proposes strategies of strengthening the ion/molecular-level separation and transfer process in membrane processes. It also analyzes the development status, existing problems, and optimization methods in the field of membranes and membrane processes. Finally, it highlights the construction strategy of membrane structures, the structure–performance relationships as well as the transfer and separation mechanisms. The target group of this book is academics and researchers in materials science, chemical engineering, biomedical engineering, and other related fields. Cover Half Title Functional Membranes for High Efficiency Molecule and Ion Transport Copyright Foreword Contents 1. Introduction to Membrane References 2. Composite Membrane for Organic Solvent Nanofiltration 2.1 Introduction 2.2 Composite Membrane with Ti3C2Tx-Incorporated Active Layer 2.3 Composite Membrane with Functionalized Ti3C2Tx-Incorporated Active Layer 2.4 Composite Membrane with Quantum Dot-Incorporated Active Layer 2.5 Composite Membrane with Quantum Dot-Assembled Active Layer 2.6 Composite Membrane with Ultrathin Active Layer 2.7 Composite Membrane with Hierarchically-Structured Active Layer References 3. Lamellar Membrane for Organic Solvent Nanofiltration 3.1 Introduction 3.2 Lamellar Ti3C2Tx Membrane 3.3 Lamellar Functionalized-Ti3C2Tx Membrane 3.4 Lamellar MoS2 Membranes with Loosely Stacked Structure 3.5 Lamellar GO Membrane with Polymer Cluster-Patterned Surface 3.6 Lamellar GO-PEI Membrane 3.7 Lamellar GO-Quantum Dot Membrane References 4. Composite Proton Exchange Membrane for Hydrogen Fuel Cell 4.1 Introduction 4.2 Composite Membrane with Polymer Layer-Functionalized GO 4.3 Composite Membrane with Polymer Brush-Functionalized GO 4.4 Composite Membrane with Block Copolymer Brush-Functionalized GO 4.5 Composite Membrane with Ionic Liquid 4.6 Composite Membrane with Ionic Liquid and Functionalized GO 4.7 Composite Membrane with Ionic Liquid and Polymer Microcapsule 4.8 Composite Membrane with Quantum Dot References 5. Lamellar and Nanofiber-Based Proton Exchange Membranes for Hydrogen Fuel Cell 5.1 Introduction 5.2 Lamellar GO-Bacterial Cellulose Membrane 5.3 Lamellar GO-Quantum Dot Membrane 5.4 Nanofiber-Based Composite Membrane 5.5 Nanofiber-Based Composite Membrane with Dual Transfer Pathways 5.6 Quantum Dot-Incorporated Nanofiber-Based Composite Membrane 5.7 Porous Nanofiber-Based Composite Membrane References 6. Composite Separator or Electrolyte for Lithium–Sulfur Battery 6.1 Introduction 6.2 Lithiated Nanofiber-Functionalized Separator 6.3 Lamellar Ti3C2Tx-Nafion-Functionalized Separator 6.4 Asymmetry-Structure LLTO Composite Electrolyte 6.5 Laminar Vermiculite Composite Electrolyte References 7. Composite Electrolyte for All-Solid-State Lithium Battery 7.1 Introduction 7.2 Composite Electrolyte with Lithiated GO 7.3 Composite Electrolyte with Quantum Dot 7.4 Composite Electrolyte with PEO-Threaded MOF Nanosheets 7.5 Composite Electrolyte with LLTO Framework 7.6 Composite Electrolyte with LLZO Nanosheets 7.7 Laminar LLTO/Vr Composite Electrolyte References

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