課程資訊
課程名稱
尖端材料之基礎與應用
Advanced Materials: Fundamentals and Applications 
開課學期
111-2 
授課對象
理學院  物理學研究所  
授課教師
林麗瓊 
課號
Phys8150 
課程識別碼
222ED5480 
班次
 
學分
3.0 
全/半年
半年 
必/選修
選修 
上課時間
星期一2,3,4(9:10~12:10) 
上課地點
 
備註
本課程以英語授課。上課教室:凝態中心212室。(CCMS room212)
總人數上限:14人 
 
課程簡介影片
 
核心能力關聯
核心能力與課程規劃關聯圖
課程大綱
為確保您我的權利,請尊重智慧財產權及不得非法影印
課程概述

In this course, students will learn the fundamental properties, synthesis methods and applications of various advanced materials, ranging from semiconductors, to quantum matters and low-dimensional nano-materials.
Start from Si technology, you will learn the thermodynamics and kinetics of bulk and thin film growth processes. Especially, the principles and development of the specific process and factors that control the material quality will be taught. In addition, some important issues like contact problem, doping and dielectric layer would be discussed. Besides Si, the second and third generation semiconductors, such as GaAs and GaN, would be introduced. Breakthroughs in synthesis of these materials have enabled or enhanced their unique properties, which can change our daily life.
After introducing the semiconductor properties and applications, we will take a step forward to a variety of materials, including ferroelectrics, oxide-based superconductor, spintronics materials, followed by energy materials such as thermoelectrics, perovskites, polymers and MOF. Low-dimensional materials from 2D, 1D to 0D will be taught in the end of the course.  

課程目標
This multidisciplinary course will provide the knowledge of the physics and materials science of different advanced materials. Moreover, the course provides a comprehensive overview of a variety of growth methods, ranging from solution-based process, solid state synthesis, ball milling, to vapor phase deposition techniques such as sputtering, CVD, MOCVD, MBE and pulsed laser ablation.
The ultimate course objective is to enhance the critical and innovative thinking of students by in depth understanding the relationship between the growth/morphology/structure of the materials and the fundamental properties, which holds the key for realizing practical applications of these advanced materials and devices.  
課程要求
General physics and General chemistry  
預期每週課後學習時數
 
Office Hours
另約時間 備註: 另約時間 備註: Professor: Wednesday, 2-4 pm at CCMS1020 TA: Zi-Liang Yang 楊子良: Wednesday, 2-4 pm, mail: F10245003@ntu.edu.tw Please make a appointment before meeting.  
指定閱讀
 
參考書目
KITTEL, Charles, Introduction to Solid State Physics, 8th edition. Wiley, 2004.
CHUNG, Yip-Wah and KAPOOR, Monica, Introduction to Materials Science and Engineering, 2nd edition. CRC Press, to appear in April 2022. (1st edition published in 2006).
NAKAMURA, Shuji; CHICHIBU, Shigefusa F. (ed.). Introduction to Nitride Semiconductor Blue Lasers and Light Emitting Diodes. CRC Press, 2000.
NAKAMURA, Shuji; PEARTON, Stephen; FASOL, Gerhard. The Blue Laser Diode: The Complete Story. Springer Science & Business Media, 2000.
XIAO, Hong. Introduction to Semiconductor Manufacturing Technology, 2nd edition. SPIE Press E-Books, 2012.
PIERSON, H. O. Handbook of Chemical Vapor Deposition. Noyes Publication, 1999.
JONES, Anthony C.; HITCHMAN, Michael L. (ed.). Chemical Vapor Deposition: Precursors, Processes and Applications. Royal Society of Chemistry, 2009.  
評量方式
(僅供參考)
   
針對學生困難提供學生調整方式
 
上課形式
提供學生彈性出席課程方式
作業繳交方式
學生與授課老師協議改以其他形式呈現
考試形式
其他
由師生雙方議定
課程進度
週次
日期
單元主題
第1週
2/20  Si (I), bulk and thin film growth, semiconductor fundamentals, doping, contact, dielectric, devices, beyond Moore's law
 
第2週
2/27  National Holiday
 
第3週
3/6  GaAs, MBE growth, direct band gap, LEDs, laser diodes, etc.
 
第4週
3/13  GaN, MOCVD growth, alloying, blue LED, lighting and HEMT
 
第5週
3/20  Bulk crystals, solid state synthesis (& high pressure), X-ray diffraction, ferroelectrics
 
第6週
3/27  Spintronics & quantum matters (I), sputtering principles & various industrial applications
 
第7週
4/3  National Holiday

 
第8週
4/10  Spintronics & quantum matters oxide-based// SiC/AlN, high power devices
Midterm Essay Due
 
第9週
4/17  Thermoelectrics, ball milling

 
第10週
4/24  Solar cells, silicon, polymers and perovskites, molecular designs, solution-based processes

 
第11週
5/1  Metal-Organic Frameworks, adsorption, diffusion, membrane gas separation, CO2 capture
 
第12週
5/8  2D materials (I): various growth techniques (from solution-based to wafer-based), various characterizations tools
 
第13週
5/15  2D materials (I): various growth techniques (from solution-based to wafer-based), various characterizations tools
 
第14週
5/22  2D materials (II): electronic and optoelectronic applications
 
第15週
5/29  Final Exam (Written Test)
 
第16週
6/5  Final Exam (Oral Presentation)