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所在平台: Udemy |
课程主页: https://www.udemy.com/course/how-to-simulate-electronic-properties-of-nano-structures/
课程评论:没有评论
课程名称:如何模拟纳米结构的电子性质 课程概述: 本课程由“Right Vision Academy”的Milad教授,旨在为您提供进行纳米结构(如碳纳米管 CNTs 和石墨烯纳米带 GNRs)电子性质研究项目所需的工具、知识和技能。课程将涵盖以下内容: 1. **基础概念**: 深入理解能带结构(Band Structure)及其在电子学中的重要性,包括E-K图的解读,以及直接带隙与间接带隙的概念。 2. **紧束缚法 (Tight Binding Method)**: 学习如何运用紧束缚法获取任何重复性纳米结构的能带结构和带隙。课程将详细讲解紧束缚法的理论基础,如何构建哈密顿矩阵,并进入实际的编程阶段。 3. **Matlab 编程实践**: 在Matlab环境中,学员将学习如何开发一个基于紧束缚法的系统性仿真器,能够处理不同维度的石墨烯纳米带 (GNRs) 和碳纳米管 (CNTs)。通过实际例子,学员将能够提取能带结构和带隙。 4. **项目实践**: 课程的最终目标是引导学员完成一个实际项目,例如通过建模石墨烯中的缺陷,将金属型 GNRs 转化为半导体材料,或反之。学员还将学习如何调整 CNTs 和 GNRs 的带隙大小,这是纳米结构的关键电子性质。 课程特色: * **零基础入门**: 课程设计时假定学员没有任何先验知识,适合所有学习者。 * **实用技能**: 教授的知识和技能可以直接应用于独立研究和项目。 * **前沿研究**: 借鉴了教授本人在调整纳米结构带隙方面发表在知名期刊上的研究成果。 * **无风险承诺**: 提供30天全额退款保证。 课程目标: 学完本课程后,学员将具备独立执行纳米结构电子性质研究项目和进行相关科学研究的能力。
Hi there,I'm Milad from "Right Vision Academy"In this course I gonna give you the tool, knowledge and skills that you need to perform cool projects and research about electronic properties of nanostructures like, CNTs and GNRs. At the end of this course, I'll show you how you can convert a metallic GNR to semiconducting material or vice versa by modeling defects throughout the body of Graphene, as I did myself. I proposed a new method to tune Band Gap size of CNTs and GNRs, a critical electronic property of nanostructures and I published the results in credible journals.I ensure you that you'll be able to the conduct the similar research and project at the end of this course, and the good news is, once I designed this course, I supposed you have no prior knowledge, so everyone with any level and background is welcome to learn how to work with nanostructures.Throughout this course, we'll see what is band-structure? the famous E-K diagram that appears everywhere and you have heard about. You will learn how to interpret band structure and you become familiar with concept of direct and indirect band gap. Next, we proceed and I'll teach how you can obtain band structure and band gap of any repetitive nanostructure by using Tight Binding method. First I'll give you the theory of TB and how to fill Hamiltonian matrix and then we step into coding stage. Together we solve examples in Matlab and I'll show you how to develop a systematic simulator based on TB for any dimension of GNRs and CNTs. You'll be able to extract band structure and Band Gap, and we'll do a cool project at the end that gives you ideas of how you implement what you learnt to conduct wonderful valuable research.If it sounds exciting don't hesitate to enroll right now and I'm looking forward to seeing you in the course.There is no RISK!This course comes with a full 30-day money-back guarantee, which means that if you are not happy after your purchase, you can get a 100% refund with no question. Enroll now using the "Add to Cart" button on the right and get started today.