Fundamentals of Inorganic Materials Science

“Fundamentals of inorganic materials science”is a professional basic course for materials science,and it is also an important compulsory course. This course incorporates principal theories of Physical Chemistry, Structural Chemistry and Crystal Chemistry,which is the connection between the foundation courses and the professional courses of materials.

开设学校:陕西科技大学;学科:理学、

Fundamentals of Inorganic Materials Science课程:前往报名学习

Fundamentals of Inorganic Materials Science视频慕课课程简介:

“Fundamentals of inorganic materials science”is a professional basic course for materials science,and it is also an important compulsory course. This course incorporates principal theories of Physical Chemistry, Structural Chemistry and Crystal Chemistry,which is the connection between the foundation courses and the professional courses of materials.

前往报名学习

Fundamentals of Inorganic Materials Science课程列表:

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1 Introduction

-Introduction

-introduction

-Test for chapter 1

2 Crystal Imperfection

-2.1 Type of defect

--2.1 Types of point defects

--2.1 Types of point defects

-2.2.1 The expression methods of point defects

--2.2.1 The expression methods of point defects

--2.2.1 The expression methods of point defects

-2.2.2 The rules for writing of defect reaction equation

--2.2.2 The rules for writing of defect reaction equation

--2.2.2 The rules for writing of defect reaction equation

-2.3 Calculation of thermal defect concentration

--2.3 Calculation of thermal defect concentration

--2.3 Calculation of thermal defect concentration

-2.4 Non-stoichiometric compounds

--2.4 Non-stoichiometric compounds

--2.4 Non-stoichiometric compounds

-Homework for chapter 2

-Test for chapter 2

3 Solid solution

-3.1 The classification of solid solutions

--3.1 The classification of solid solutions

--3.1 The classification of solid solutions

-3.2 Substitutional solid solution

--3.2 Substitutional solid solution

--3.2 Substitutional solid solution

-3.3 Interstitial solid solution

--3.3 Interstitial solid solution

--3.3 Interstitial solid solution

-3.4 The research method of solid solutions

--3.4 The research method of solid solutions

--3.4 The research method of solid solutions

-3.5 Questions for crystal imperfection and solid solution

--Questions for crystal imperfection and solid solution

-Homework for chapter 3

-Test for chapter 3

4 Melt and glass

-4.1 Melt structure

--4.1 Melt structure

--4.1 Melt structure

-4.2 The properties of the melt

--4.2.1 The properties of the melt_viscosity

--4.2.2 The properties of the melt_surface tension

--4.2 The properties of the melt

-4.3 The characteristics of glass

--4.3 The characteristics of glass

--4.3 The characteristics of glass

-4.4 The formation of glass

--4.4.1 The formation of glass_kinetics conditions

--4.4.2 The formation of glass_crystal chemical conditions

--4.4 The formation of glass

-4.5 The structure of glass

--4.5 The structure of glass

--4.5 The structure of glass

-4.6 The typical glass

--4.6 The typical glass

--4.6 The typical glass

-4.7 Questions for melt and glass

--Questions for melt and glass

-Test for chapter 4

5 Phase equilibrium

-5.1 Phase equilibrium in silicate systems

--5.1 Phase equilibrium in silicate system

--5.1 Phase equilibrium in silicate system

-5.2 One-component system phase diagram

--5.2 One-component system phase diagram

--5.2 One-component system phase diagram

-5.3 Applications of one-component diagrams

--5.3 Applications of one-component diagrams

--5.3 Applications of one-component diagrams

-5.4 Binary diagrams

--5.4.1 Binary diagram with eutectic point

--5.4.2 Binary system with a congruent melting compound and one with an incongruent melting compound

--5.4.3 Other five types of phase diagrams of binary systems

--5.4 Binary diagrams

-5.5 Applications of binary phase diagrams

--5.5 Applications of binary phase diagrams

--5.5 Applications of binary phase diagrams

-5.6 Ternary diagrams

--5.6.1 Representation of ternary system composition

--5.6.1 Representation of ternary system composition

--5.6.2 Three-dimensional state diagram and plane projection diagram of a simple ternary system

--5.6.2 Three-dimensional state diagram and plane projection diagram of a simple ternary system

--5.6.3 (1) Basic types of ternary phase diagrams

--5.6.3 (2) Basic types of ternary phase diagrams

--5.6.3 (3) Basic types of ternary phase diagrams

--5.6.3 Basic types of ternary phase diagrams

-5.7 Applications of ternary phase diagrams

--5.7 Applications of ternary phase diagrams

--5.7 Applications of ternary phase diagrams

-5.8 Research methods of phase equilibrium

--5.8 Research methods of phase equilibrium

--5.8 Research methods of phase equilibrium

-5.9 Questions for phase equilibria

--Questions for phase equilibria

-Homework for chaper 5

-Test for chapter 5

6 Diffusion

-6.1 Overview of diffusion

--6.1 Overview of diffusion

--6.1 Overview of diffusion

-6.2 The kinetic equations of diffusion

--6.2 The kinetic equations of diffusion

--6.2 The kinetic equations of diffusion

-6.3 The thermodynamic equation of diffusion

--6.3 The thermodynamic equation of diffusion

--6.3 The thermodynamic equation of diffusion

-6.4 Diffusion mechanisms and diffusion coefficient

--6.4 Diffusion mechanisms and diffusion coefficient

--6.4 Diffusion mechanisms and diffusion coefficient

-6.5 Diffusion in solid

--6.5 Diffusion in solid

--6.5 Diffusion in solid

-6.6 Factors affecting diffusion

--6.6 Factors affecting diffusion

--6.6 Factors affecting diffusion

-6.7 Questions for diffusion

--Questions for diffusion

-Homework for chaper 6

-Test for chapter 6

7 Solid state reactions

-7.1 Overview of solid state reactions

--7.1 Overview of solid state reactions

--7.1 Overview of solid state reactions

-7.2 Kinetic equation of solid state reaction

--7.2 Kinetic equation of solid state reaction

-7.3 Factors affecting the solid state reaction

--7.3 Factors affecting the solid state reaction

--7.3 Factors affecting the solid state reaction

-Homeword for chapter 7

8 Phase transformation

-8.1 The categories of phase transformation

--8.1 The categories of phase transformation

--8.1 The categories of phase transformation

-8.2 Crystallization

--8.2.1 Crystallization thermodynamics

--8.2.2 Crystallization kinetics

--8.2 Crystallization

-8.3 Phase Separation of glass

--8.3 Phase separation of glass

--8.3 Phase separation of glass

-8.4 Questions for phase transformation

--Questions for phase transformation

-Test for chapter 8

9 Sintering

-9.1 Overview of sintering

--9.1 Overview of sintering

--9.1 Overview of sintering

-9.2 The driving forces and models of sintering

--9.2 The driving forces and models of sintering

--9.2 The driving forces and models of sintering

-9.3 Solid state sintering

--9.3.1 Evaporation-Condensation mass transfer

--9.3.2 Diffusion mass transfer

--9.3 Solid state sintering

-9.4 Liquid phase sintering

--9.4.1 Flow mass transfer

--9.4.2 Solution-Precipitation mass transfer

--9.4 Liquid phase sintering

-9.5 Grain growth and secondary recrystallization

--9.5.1 Grain growth

--9.5.2 Secondary recrystallization

--9.5 Grain growth and secondary recrystallization

-9.6 Factors affecting sintering

--9.6 Factors affecting sintering

--9.6 Factors affecting sintering

-9.7 Questions for sintering

--Questions for sintering

-Homework for chapter 9

-Test for chapter 9

Fundamentals of Inorganic Materials Science开设学校:陕西科技大学

Fundamentals of Inorganic Materials Science授课教师:

林营-教授-陕西科技大学-

林营,女,博士(后),教授,硕士研究生导师,陕西科技大学学术骨干。国家自然科学基金同行评议专家,Journal of MaterialsChemistry A》等多种权威期刊审稿人。 近年来在《ACS Applied Materials and Interfaces》、《Chemical Engineering Journal》、《ACS Sustainable Chemistry & Engineering》等国内外学术期刊上发表SCI收录论文100余篇,其中ESI热点论文1篇、ESI高被引论文2篇、期刊封面论文4篇。已授权国家发明专利40余项,专利技术转让4项。先后承担国家自然科学基金项目2项、陕西省自然科学基金2项、教育厅专项基金项目3项、中国博士后基金1项、故宫博物院等横向科研项目4项。中国轻工业“十三五”规划教材主编、陕西省高校创新创业教育课程负责人,主持省级教改重点攻关项目1项。获中国轻工联合总会科学技术发明一等奖、上海市科学技术一等奖、轻工联合总会科学技术发明二等奖、陕西省科学技术二等奖和咸阳市科学技术一等奖各1项。获2018年陕西科技大学教学质量奖、2013年和2016年陕西科技大学青年教师讲课比赛二等奖、2015年第一届全国高校无机非金属材料专业青年教师讲课比赛二等奖各1项。培养多名研究生获得国家奖学金和陕西科技大学优秀硕士学位论文。 研究方向:纳米能源材料、电子信息功能材料、古陶瓷及传统陶瓷。

赵婷-副教授-陕西科技大学-

刘虎林-副教授-陕西科技大学-

方媛-讲师-陕西科技大学-

李永-讲师-陕西科技大学-

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