《Springer手冊精選系列·晶體生長手冊(第6冊):晶體生長專題(影印版)》致力于精選這一領域的部分現(xiàn)代課題,例如蛋白質晶體生長、凝膠結晶、原位結構、單晶閃爍材料的生長、光電材料和線切割大晶體薄膜。
Govindhan Dhanaraj is the Manager of Crystal Growth
Technologies at Advanced Renewable Energy Company (ARC Energy) at
Nashua, New Hampshire (USA) focusing on the growth of large size
sapphire crystals for LED lighting applications, characterization
and related crystal growth furnace development. He received his PhD
from the Indian Institute of Science, Bangalore and his Master of
Science from Anna University (India). Immediately after his
doctoral degree, Dr. Dhanaraj joined a National Laboratory,
presently known as Rajaramanna Center for Advanced Technology in
India, where he established an advanced Crystal Growth Laboratory
for the growth of optical and laser crystals. Prior to joining ARC
Energy, Dr. Dhanaraj served as a Research Professor at the
Department of Materials Science and Engineering, Stony Brook
University, NY, and also held a position of Research Assistant
Professor at Hampton University, VA. During his 25 years of focused
expertise in crystal growth research, he has developed optical,
laser and semiconductor bulk crystals and SiC epitaxial films using
solution, flux, Czochralski, Bridgeman, gel and vapor methods, and
characterized them using x-ray topography, synchrotron topography,
chemical etching and optical and atomic force microscopic
techniques. He co-organized a symposium on Industrial Crystal
Growth under the 17th American Conference on Crystal Growth and
Epitaxy in conjunction with the 14th US Biennial Workshop on
Organometallic Vapor Phase Epitaxy held at Lake Geneva, WIin 2009.
Dr. Dhanaraj has delivered invited lectures and also served as
session chairman in many crystal growth and materials science
meetings. He has published over 100 papers and his research
articles have attracted over 250 rich citations.
縮略語
PartH 晶體生長專題
47 蛋白質晶體生長的方法
47.1 生物高分子溶液的性質
47.2 傳輸現(xiàn)象和形成晶體
47.3 晶體生長的典型方法
47.4 擴散一控制方法形成蛋白質晶體
47.5 晶體生長的新趨勢(晶體品質增強)
47.6 原子力顯微鏡的2-維表征(案例研究)
47.7 X射線衍射的3-維表征和相關方法
參考文獻
48 用凝膠法形成晶體
48.1 晶體淀積病中的凝膠生長
48.2 實驗方法
48.3 凝膠系統(tǒng)中的晶格的形成
48.4 利用凝膠技術的晶體生長
48.5 晶體淀積病的應用
48.6 晶體淀積相關的疾病
48.7 草酸鈣
48.8 磷酸鈣
48.9 羥基磷灰石(HAP)
48.10 二水磷酸氫鈣(DCPD)
48.11 硫酸鈣
48.12 尿酸和單鈉酸尿
48.13 1-胱氨酸
48.14 1-酪氨酸、馬尿酸和環(huán)丙氟哌酸
48.15 動脈硬化和膽結石
48.16 激素的結晶:黃體酮和睪酮
48.17 胰腺炎
48.18 結論
參考文獻
49 鈦硅酸鹽中晶體生長和離子交換
49.1 X射線方法
49.2 時間一分辨實驗的設備
49.3 檢測
49.4 軟件
49.5 原位細胞的種類
49.6 利用Sitinakite技術對鈦硅酸鹽(Na-TS)的原位研究
49.7 原位研究的討論
49.8 總結
參考文獻
50 單晶閃爍材料、
50.1 背景
50.2 閃爍材料
50.3 前景展望
50.4 結論
參考文獻
51 硅太陽能電池:材料、器件和制造
51.1 硅光生伏特
51.2 硅光生伏特的晶體生長技術
51.3 電池制作技術
51.4 總結和討論
參考文獻
52 利用線鋸制造和切割晶片
52.1 從晶體錠到基本的晶片
52.2 切割:晶片制造中的第一個后生長工藝
52.3 晶片切割中的現(xiàn)代線據(jù)
52.4 總結與展望
參考文獻
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