Synthesis and Device Applications of Graphene Derivatives and Quantum Dots
暫譯: 石墨烯衍生物與量子點的合成及其裝置應用
Sun, Fangyan
- 出版商: Springer
- 出版日期: 2025-04-24
- 售價: $5,860
- 貴賓價: 9.5 折 $5,567
- 語言: 英文
- 頁數: 97
- 裝訂: Quality Paper - also called trade paper
- ISBN: 3031564057
- ISBN-13: 9783031564055
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相關分類:
量子 Quantum
海外代購書籍(需單獨結帳)
相關主題
商品描述
商品描述(中文翻譯)
本書探討了石墨烯衍生物和量子點的合成方法及其裝置應用。書中詳細概述了這些先進納米材料的合成技術,包括溶液相合成和表面功能化。它深入研究了石墨烯衍生物和量子點的獨特性質和特徵,突顯了它們在革新電子裝置方面的潛力。本書還討論了與其合成和裝置整合相關的挑戰和限制,為該領域的研究人員和專業人士提供了寶貴的見解。由該領域的專家撰寫,本書是對於科學家、工程師和學生探索石墨烯衍生物和量子點在開發具有增強性能和功能的創新裝置方面的廣大潛力的寶貴資源。
作者簡介
Dr. Fangyan Sun is a postdoctoral researcher at the University of Windsor, Canada, with a unique academic background in Materials Technology, Nanoscience, and Electrical and Computer Engineering. She earned her B.Sc. degree from the University of Waterloo and her B.Eng. degree from Beijing Jiaotong University (BJTU), both in 2017. In 2022, she successfully completed her Ph.D. from the University of Waterloo, further deepening her knowledge and expertise in the realm of nanotechnology and its applications. Currently, in collaboration with Stathera, Inc., Dr. Fangyan is delving into research related to Micro-Electro-Mechanical Systems (MEMS). Her research interests are wide-ranging, encompassing graphene derivatives, optoelectronic devices, third-generation photovoltaic and photodetector devices, and micro/nanofabrication. A dedicated advocate for sustainable practices, Dr. Fangyan's work also extends to exploring non-toxic nanomaterials and the role of nanotechnology in sustainable energy. Her vision and expertise continually push the boundaries of research in the field, driving advancements that promise to shape a more sustainable and efficient future.
作者簡介(中文翻譯)
孫芳妍博士是加拿大溫莎大學的博士後研究員,擁有材料技術、奈米科學以及電機與計算機工程的獨特學術背景。她於2017年獲得滑鐵盧大學的理學士學位及北京交通大學的工學士學位。2022年,她成功完成滑鐵盧大學的博士學位,進一步深化了她在奈米技術及其應用領域的知識與專業。目前,孫博士與Stathera, Inc.合作,深入研究微電機系統(Micro-Electro-Mechanical Systems, MEMS)。她的研究興趣廣泛,涵蓋石墨烯衍生物、光電裝置、第三代光伏及光檢測器裝置,以及微/奈米製造。作為可持續實踐的堅定倡導者,孫博士的工作還延伸至探索無毒奈米材料及奈米技術在可持續能源中的角色。她的願景和專業不斷推動該領域的研究邊界,推動著有望塑造更可持續和高效未來的進步。