Recent Advances in Freeform Electronics

所在平台: Coursera

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

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课程简介

课程名称: 最近的形态自由电子学进展 课程概述: 本课程旨在帮助学习者理解p-n结、二极管和MOSFET(金属氧化物半导体场效应晶体管)的基本原理。同时,将介绍灵活/可拉伸电子技术、透明光电电子学以及基于一维或二维纳米材料的印刷电子学的最新进展。此外,课程内容还包括使用新型材料(如纤维素纳米纤维或金属纳米纤维)形成高性能透明薄膜或导体。课程将介绍包括触摸屏面板、气体/化学/生物传感器、智能隐形眼镜、无线透明天线和OLED在内的下一代电子设备的制造实例。 课程大纲: 1. 电子设备基础 - 本模块涵盖电子设备的基础知识,包括固体物理学和MOSFET的基本理论。 2. 可拉伸电子技术 - 本模块介绍形成可拉伸电子设备的各种方法。 3. 透明电极 - 本模块讨论透明电极的传统材料及其替代材料。 4. 智能传感器 - 本模块聚焦于基于碳纳米材料的场效应晶体管和透明可穿戴电子设备。 5. 印刷电子学 - 本模块涵盖印刷技术的基本原理以及利用E-jet印刷制作的各种电子设备。 6. 可变形电子的高可靠性 - 本模块讨论新开发的提高可靠性的材料及其特性。 本课程适合对电子技术和创新材料感兴趣的学习者,提供最新的研究和应用前景。

课程大纲

Name:Fundamentals for Electronic Devices

Description:Module 1 is the fundamentals of electronics devices. Solid physics and basic theory of MOSFET are covered.

Name:Stretchable Electronics

Description:Module 2 is Stretchable Electronics. Various approaches to form stretchable electronic devices are covered.

Name:Transparent Electrodes

Description:Module 3 is Transparent Electrodes. Conventional materials for transparent electrodes and their alternatives are covered.

Name:Smart Sensors

Description:Module 4 is the smart sensors. Carbon nanomaterials-based FETs and transparent, wearable electronic devices are covered.

Name:Printed Electronics

Description:Module 5 is printed electronics. Fundamentals of printing technologies and various electronics using E-jet printing are covered.

Name:High Reliability for Deformable Electronics

Description:Module 6 is High Reliability for Deformable Electronics. Newly developed materials for better reliability and their properties are covered.

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课程详情

In this course, the learners will understand fundamental basic backgrounds of p-n junctions, diodes and MOSFETs (Metal Oxide Semiconductor Field Effect Transistors). Also, recent approaches on flexible / stretchable electronics, transparent optoelectronics, and printed electronics using one dimensional or two dimensional nanomaterials will be introduced. Furthermore, the formation of high-performance, transparent thin films or conductors using novel materials such as cellulose nanofibers or metal nanofibers is included for course materials. Examples of device fabrications, including touch screen panels, gas / chemical / bio sensors, smart contact lenses, wireless and transparent antennas, and OLEDs, are also introduced for next generation electronic devices.

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