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所在平台: Coursera |
课程主页: https://www.coursera.org/learn/lithium-based-batteries
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课程名称:锂基电池 概述:在本课程中,您将学习锂基一次电池的活性材料、化学反应和制造工艺。 课程大纲: 1. 课程介绍 - 描述:课程概述与目标。 2. 模块1:锂基电池简介 - 描述:本模块介绍锂一次电池的工作原理以及气体、液体和固体状态的电解质。主要目标是了解锂-SO2、锂-SOCl2、锂-SO2Cl2、锂-FeS2、锂-MnO2和锂-I2电池的电极活性材料及其性能。此外,还将探讨锂-I2电池在心脏起搏器中的设计特点。 3. 模块2:锂离子电池 - 描述:本模块提供锂离子二次电池的历史,并比较其性能、安全性和循环寿命与其他类型电池的差异。主要目标是了解各种阳极和阴极活性材料,以及电池在能量密度、功率密度、循环寿命、充电速率等方面的比较。此外,还将重点介绍便携式、固定式和运输应用。 4. 模块3:固态锂电池 - 描述:本模块介绍固体电解质和全固态电池的历史,并将其性能、安全性和循环寿命与锂离子电池进行比较。主要目标是了解固态电池的优缺点,以及针对电解质与电极界面之间的界面电阻问题所采取的解决策略。此外,还将重点探讨潜在的应用领域。
Name:Course Introduction
Description:
Name:Module 1: Introduction to Lithium-based Batteries
Description:Module 1 provides the operation principles of Li primary batteries along with electrolyte in gaseous, liquid and solid forms. The major objective in this module is to learn about electrode active materials for Li-SO2, Li-SOCl2, Li-SO2Cl2, Li-FeS2, Li-MnO2, Li-I2 batteries and their performance. In addition, the objective is also to bring out the design features of Li-I2 batteries for cardiac pacemakers.
Name:Module 2: Li-ion Batteries
Description:Module 2 provides the history of secondary Li-Ion batteries along with comparison of performance, safety and cycle life with other batteries. The major objective in this module is to learn about various anode and various cathode active materials along with the comparison of the batteries related to energy density, power density, cycle life, charging rates, etc. In addition, the objective is also to highlight portable, stationary and transportation applications.
Name:Module 3: Solid-state Lithium Batteries
Description:Module 3 provides the history of solid electrolytes and all solid-state batteries along with comparison of performance, safety and cycle life with Li-ion batteries with solid polymer-, oxide- and sulfide-based Li-ion conducting electrolytes. The major objective in this module is to learn about advantages and disadvantages of solid-state batteries along with the strategy adopted for solving the issues related to interfacial resistance between the electrolyte-electrode interface. In addition, the objective is also to highlight the potential applications.
Lithium based Batteries: In this course, you’ll identify active materials, chemistry and manufacturing processes as they relate to Li based primary batteries.