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功能導向晶態材料的結構設計和可控制備 版權信息
- ISBN:9787308227537
- 條形碼:9787308227537 ; 978-7-308-22753-7
- 裝幀:平裝-膠訂
- 冊數:暫無
- 重量:暫無
- 所屬分類:>
功能導向晶態材料的結構設計和可控制備 內容簡介
本書為“中國基礎研究報告”叢書《功能導向晶態材料的結構設計和可控制備》英文版,基于國家自然科學基金重大研究計劃“功能導向晶態材料的結構設計和可控制備”的研究成果寫作完成。本重大研究計劃以晶態材料為研究對象,以宏觀性質(光、電、磁及其復合性能)與微觀(電子、分子、聚集態)結構之間內在關系為主線,旨在揭示決定晶態材料宏觀性質的功能基元及其在空間的集成方式,發展功能基元理論,深化對晶態材料功能特性和功能基元本質的認識;開展具有重大科學意義和應用前景的功能晶態材料的設計、合成、制備、表征和應用探索研究,為實現晶態材料功能導向的結構設計和可控制備提供新理論、新方法與新材料體系,推動相關學科的發展。
功能導向晶態材料的結構設計和可控制備 目錄
Chapter 1 Project Overview
1.1 Introduction
1.1.1 Overall Arrangement
1.1.2 Overview of Program Implementation
1.1.3 Interdisciplinary Efforts
1.2 Research Circumstances
1.2.1 Overall Scientific Objectives
1.2.2 Key Scientific Issues
1.3 Significant Progress
Chapter 2 Research in China and Abroad
2.1 Research Status and Development Trend
2.1.1 Research Status and Development Trend of Optoelectronic Functional Crystals
2.1.2 Research Status and Development Trend of Molecular Ferroelectrics
2.1.3 Research Status and Development Trend of Molecular Magnetics
2.1.4 Research Status and Development Trend of Superconducting Materials
2.1.5 Research Status and Development Trend of Thermoelectric Materials
2.2 Development Trends of Functional Crystalline Materials
2.2.1 Developments in Laser Crystals and Nonlinear Optical Crystals
2.2.2 Development Trend of Molecular Ferroelectrics
2.2.3 Development Trend of Molecular Magnets
2.2.4 Development Trend of Metal-Organic Framework Materials
2.2.5 Development Trend of Superconducting Materials
2.2.6 Trends in Thermoelectric Materials
Chapter 3 Major Research Achievements
3.1 Structural Designing and Modulation of Magnetic Functional Molecular Crystalline Materials
3.1.1 Ground-State Spin and Uniaxial Magnetic Anisotropy Modulation of Single-Molecule Magnets
3.1.2 Metal-Organic Single-Ion Magnets
3.1.3 Assembly Based on High-Performance Single-Ion Magnet Substrates
3.1.4 Nuclear Spin Strategy for Suppressing Magnetic Quantum Tunneling Effect
3.2 Design, Synthesis, and Performance of High-Performance Molecular Ferroelectrics
3.2.1 Molecular Ferroelectrics with High Curie Temperature, Large Saturation Polarization
3.2.2 Molecular Ferroelectrics with Large Piezoelectric Coefficients
3.2.3 Homochiral Molecular Ferroelectrics
3.2.4 Molecular Ferroelectrics with Semiconductor Properties
3.2.5 New Strategies for Precise Design of Molecular Ferroelectrics
3.2.6 Photoferroelectric Semiconductor Crystalline Materials for Next-Generation Photoelectric Detection Technology
3.2.7 Discovery of Molecule-Based Ferroelectric Crystalline Materials with Fast Polarization Reversals
3.2.8 Discovery of Incommensurate Structure Modulated Molecular Ferroelectric Crystals
3.3 Laser Crystals and Nonlinear Optical Crystals
3.3.1 Research on the Structure-Property Relationships of Nonlinear Optical Crystals
3.3.2 New Deep-Ultraviolet Nonlinear Optical Crystals
3.3.3 Infrared Nonlinear Optical Crystal
3.3.4 Laser Crystals and Transparent Ceramics
3.4 New Electron-Doped Iron-Selenium-Based Superconductors
3.4.1 First Discovery of Electron-Doped Iron-Selenium-Based Superconductors
3.4.2 First Discovery of Molecular Intercalation Series of Iron-Selenium- Based High-Temperature Superconductors
3.4.3 True Composition and Structure of Superconducting Phases in the K-Fe-Se System
3.4.4 First Anderson Localization in the Single-Crystal Electron System
3.4.5 Regulation of Superconductivity in \"l-hin-Layered Iron-Selenium (FeSe) Single-Crystals
3.5 Other Novel Crystalline Materials
3.5.1 Metal-Organic Framework Isoporous Materials
3.5.2 2D Crystalline Materials
Chapter 4 Outlook
4.1 Strategic Needs
4.2 Conceptions and Suggestions
References
Index
展開全部
功能導向晶態材料的結構設計和可控制備 作者簡介
功能導向晶態材料的結構設計和可控制備項目組的指導專家組組長為洪茂椿。洪茂椿,無機化學家,中國科學院院士。長期從事無機化學研究。
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