新能源储能材料及电化学应用的教学实验设计  

Teaching Experiment Design of New Energy Storage Materials and Electrochemical Applications

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作  者:袁菁菁 董如林[1] YUAN Jing-jing;DONG Ru-lin(Department of Applied Chemistry,School of Petrochemical Engineering,Changzhou University,Jiangsu Changzhou 213164,China)

机构地区:[1]常州大学石油化工学院应用化学系,江苏常州213164

出  处:《广州化工》2023年第23期107-109,115,共4页GuangZhou Chemical Industry

基  金:江苏省基础研究计划(自然科学基金)青年基金项目(No.BK20230639)。

摘  要:《应用电化学》实验课程是化工专业教学的一个重要内容,而随着新能源的快速发展,新能源电极材料的设计和储能器件的应用成为重中之重。通过设计高性能超级电容器为内容,分别从材料模型设计、材料合成步骤、结构表征测试、超级电容器组装、电化学应用测试五个方面进行教学实验。本文重点阐述在实验教学过程中,如何设计和改性电极材料的晶体结构,如何获得高质量的电极材料、如何掌握电容器的组装关键工艺,以及如何实现电容器的高比电容。通过创新性的实验设计,帮助学生更好地掌握新能源储能材料的设计和电化学应用,提高其分析和解决问题的能力,以及探索新的应用领域的能力。The experimental course of Applied Electrochemistry is an important part of Chemical Engineering teaching,and with the rapid development of new energy,the design of new energy electrode materials and the application of energy storage devices have become top priorities.The design of high-performance supercapacitors was focused on,and teaching experiments were conducted from six aspects:material model design,experimental scheme design,material synthesis steps,structural characterization testing,capacitor assembly,and electrochemical application testing.How to design and modify the crystal structure of electrode materials,how to obtain high-quality electrode materials,how to master the key assembly process of capacitors,and how to achieve high specific capacitance of capacitors in the experimental teaching process were focused on.Innovative experimental design helped students better master the design and electrochemical applications of new energy storage materials,their ability to analyze and solve problems was improved,and new application fields was explored.

关 键 词:新能源 电极材料 电化学 实验设计 

分 类 号:G642[文化科学—高等教育学]

 

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