Plastic electronics

所在平台: Coursera

课程主页: https://www.coursera.org/learn/plastic-electronics

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课程简介

课程名称:塑料电子学 概述:塑料电子学是一个四十年前出现的概念,起源于电导聚合物的发现。十年后,首个使用有机固体替代普遍应用的无机半导体的电子设备问世。塑料电子学的最佳成就是有机发光二极管(OLED),目前已广泛应用于许多智能手机和电视机的显示屏中。本课程旨在提供塑料电子设备物理学的全面概述。完成本课程后,学生应能在以下主题上展示理论知识: - 有机半导体的概念 - 聚合物和有机半导体中的电荷载流子传输 - 有机半导体的光学特性 - 金属与有机固体间的电荷注入 - 主要塑料电子设备的工作模式:有机发光二极管(OLED)、有机光伏电池(OPV)和有机场效应晶体管(OFET) 课程大纲: 1. 名称:塑料电子学简介 描述:本模块为半导体的概念入门,阐明半导体是所有电子设备的主要成分,并展示某些有机化合物如何表现出半导体特性。 2. 名称:有机半导体中的电荷载流子传输 描述:电子设备通过施加电压而产生电流。该过程由电荷载流子传输控制,本模块对此进行详细描述。 3. 名称:有机半导体的光学特性 描述:除了电学特性外,电子设备还涉及光学方面,例如在发光二极管和光伏电池中。本模块描述光与有机半导体的相互作用。 4. 名称:塑料电子设备中的界面 描述:待补充相关内容。 5. 名称:塑料电子设备 描述:待补充相关内容。 通过本课程的学习,学生将加深对塑料电子学的理解,并掌握与有机半导体相关的重要概念和技术。

课程大纲

Name:Introduction to plastic electronics

Description:This first module is an introduction to the concept of semiconductor, which is the primary consituent of all electronic decives. We also show how some organic compounds can behave as semiconductors.

Name:Charge carrier transport in organic semiconductors

Description:Electronic devives work through an electrical current generated by applying an electrical voltage. The process is controlled by charge carrier transport, descibed in this module.

Name:Optical properties of organic semiconductors

Description:Beside electrical properties, electronic devices also involve optical aspects, for example in light-emitting diodes and photovoltaic cells. This modulel describes the interactions of light with organic semiconductors.

Name:Interfaces in plastic electronic devices

Description:

Name:Plastic electronic devices

Description:

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课程详情

Plastic electronics is a concept that emerged forty years ago, with the discovery of electrically conductive polymers. Ten years later, the first electronic devices using organic solids in place of the ubiquitous inorganic semiconductors were realised. The best achievement of plastic electronics is constituted by Organic Light-Emitting Diodes (OLEDs) that equip the display of many smartphones, and even TV sets. The objective of this course is to provide a comprehensive overview of the physics of plastic electronic devices. After taking this course, the student should be able to demonstrate theoretical knowledge on the following subjects: Concept of organic semiconductors; Charge carrier transport in polymeric and organic semiconductors; Optical properties of organic semiconductors; Charge injection from metals to organic solids; Operating mode of the main plastic electronic devices: Organic light-emitting diodes (OLEDs), organic photovoltaic cells (OPVs) and organic field-effect transistors (OFETs).

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