Nanotechnology and Nanosensors, Part1

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课程主页: https://www.coursera.org/learn/nanotechnology1

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课程简介

课程名称:纳米技术与纳米传感器第一部分 课程概述: 本课程探讨纳米技术和纳米传感器,这些领域涉及生物化学、物理学、生物学、材料科学、电气工程等多个学科。该课程将对纳米技术和纳米材料的基本原理进行调查,并讨论它们在新型传感属性和应用中的关键作用。通过探讨纳米尺度的跨学科科学和工程知识,学生将理解纳米传感器的基本物理差异。课程结束时,学生将掌握纳米材料和纳米传感器的制作、表征和操控方法,并学习如何将其应用于新的应用场景。此外,学生还将能够结合个人兴趣,应用他们对纳米技术和纳米传感器的知识。 课程目标: 本课程的主要目标是提升学生的批判性、创造性和创新性思维。课程鼓励多文化的小组合作,构建国际“思想库”,以创造新想法。在整个学习过程中,学生将被要求反思所学内容,思考“跳出框框”,并提出创造性的想法。 课程内容包括: 1. 纳米级材料在传感应用中的重要性。 2. 基于纳米材料的传感器的表征方法。 3. 为特定传感应用定制纳米材料的方法。 4. 金属和半导体纳米粒子。 5. 有机和无机纳米管及纳米线。 6. 基于纳米材料的光学、机械和化学传感器。 7. 基于混合纳米材料的传感器。 推荐阅读材料: - Jiří Janata, 《化学传感器原理》,Springer出版社,第二版(1989)。 - Roger George Jackson, 《新型传感器与传感技术》,CRC出版社(2004)。 教学团队介绍: 课程由哈萨姆·哈伊克教授主讲,他在纳米技术、纳米传感器与非侵入性疾病诊断领域是一位专家。哈伊克教授曾获多个国际奖项,并领导一个欧洲高校和企业的联盟,开发先进的纳米传感器用于疾病诊断。课程的助教团队由多位在相关领域拥有丰富经验的学生组成,致力于为学生提供指导和支持。 通过本课程的学习,学生将能够有效掌握纳米技术和纳米传感器的相关知识,并推进其在科学研究和实际应用中的理解与应用。

课程大纲

Name:Introduction to Nanotechnology, Part 1

Description:The description goes here

Name:Introduction to Nanotechnology, Part 2

Description:The description goes here

Name:Introduction to Sensors’ Science and Technology

Description:The description goes here

Name:Metal Nanoparticles-based Sensors

Description:The description goes here

Name:Quantum Dots Sensor

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Nanotechnology and nanosensors are broad, interdisciplinary areas that encompass (bio)chemistry, physics, biology, materials science, electrical engineering and more. The present course will provide a survey on some of the fundamental principles behind nanotechnology and nanomaterials and their vital role in novel sensing properties and applications. The course will discuss interesting interdisciplinary scientific and engineering knowledge at the nanoscale to understand fundamental physical differences at the nanosensors. By the end of the course, students will understand the fabrication, characterization, and manipulation of nanomaterials, nanosensors, and how they can be exploited for new applications. Also, students will apply their knowledge of nanotechnology and nanosensors to a topic of personal interest in this course. ---------------- COURSE OBJECTIVES The course main objective is to enhance critical, creative, and innovative thinking. The course encourages multicultural group work, constructing international 'thinking tanks' for the creation of new ideas. Throughout the course, you will be asked to reflect upon your learning, think "out of the box", and suggest creative ideas. The course is set to encourage the understanding of: 1. The importance of nanoscale materials for sensing applications. 2. Approaches used for characterizing sensors based nanomaterials. 3. Approaches used for tailoring nanomaterials for a specific sensing application. 4. Metallic and semiconductor nanoparticles. 5. Organic and inorganic nanotubes and nanowires. 6. Optical, mechanical and chemical sensors based on nanomaterials. 7. Hybrid nanomaterial-based sensors. ---------------- We recommend that you read the following supplementary reading materials: -Jiří Janata, Principles of Chemical Sensors, Springer, 2d Edition (1989). -Roger George Jackson, Novel Sensors and Sensing, CRC Press (2004). _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ Teaching Team About Professor Haick Hossam Professor Hossam Haick is an expert in the field of nanotechnology, nanosensors, and non-invasive disease diagnosis. Prof. Haick is the recipient of the prestigious Marie Curie Excellence Award, ERC Award, and the FP-7 Health Award. He is also the recipient of more than 42 international honors and prizes for his achievements, including a Knight of the Order of Academic Palms (conferred by the French Government) and the “List of the World’s Top 35 Young Scientists”, and the Discovery Award of the Bill & Melinda Gates. Prof. Haick is the founder and the leader of a European consortium of eight universities and companies for the development of advanced generation of nanosensors for disease diagnosis. He also serves as an associate editor of the two journals and serves as an advisory consultant to the Chemical Abstracts Service (CAS) – the world's authority for chemical information - a senior scientific advisory member of several national and international companies and institutes, and as a scientific evaluator in the European Commission. Email: hhossam@technion.ac.il _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ Course Staff Meital Bar-Segev, Teaching Assistant: Received her B.A. (Cum Laude) in Chemistry and B.Sc (Cum Laude) in Materials Engineering from the Technion – Israel Institute of Technology (both in 2010). During her studies, she worked in a student position at Tower Semiconductors Ltd. After graduation she worked at Alfred Mann Institute in the Technion (AMIT) as a process development engineer. Currently, she performs her Ph.D. degree (direct track) in the Russell Berrie Nanotechnology Institute (RBNI) of the Technion under the supervision of Prof. Hossam Haick. The research of Meital focuses is the development of electronic skin based on nanoparticles. Abeer Watted, Teaching Assistant: Received her B.Sc. and M.Sc. in Transportation and Highways Engineering from the Technion. She is a Ph.D. student at the Faculty of Education in Science and Technology at the Technion, under the supervision of Asst. Prof. Miri Barak. She received a second master degree in Educatu in Science and Technology from the Technion in 2013. Her research focuses on science education and inquiry-based laboratories. Currently, Abeer works as a lecturer at Al-Qasemi Academic College of Education, where she serves also as the head of Civil Engineering Department. Maya Usher, Teaching Assistant: Received her B.A. and M.A. (Cum Laude) in Communication Studies from Sapir Academic College and Ben Gurion University- Israel (2009; 2013 respectively). Currently, Maya is a PhD. candidate at the Faculty of Education in Science and Technology at the Technion, under the supervision of Asst. Prof. Miri Barak. Her research focuses on examining online collaborative learning in small multicultural groups. Muhammad Khatib, Teaching Assistant: Received his B.Sc in Biochemical Engineering from the Technion – Israel Institute of Technology (2015). His final research project, conducted with Prof. Avi Schroeder, dealt with harnessing liposome-based drug delivery systems to applications in precise agriculture. Currently, he performs his Ph.D. (special track) in the Department of Chemical Engineering of the Technion under the supervision of Prof. Hossam Haick, and his research focuses on self-healing devices for monitoring infectious diseases. Miri Barak, Pedagogical Advisor: Assistant Professor at the Faculty of Education in Science and Technology, Technion- Israel Institute of Technology. She is the Head of the Science and Learning Technologies group and the advisor of graduate students. Her academic activities focus on developing, integrating, and evaluating science education curricula at school and higher education levels. Her studies involve the use of information and communication technologies (ICT), with emphasis on emerging web-2.0 and cloud applications, to foster meaningful learning and high-order thinking.

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