學術活動
光學
Chemical Additive-Enabled Advancements for Perovskite Photovoltaic and Semiconductor Manufacturing
浏覽次數:
主講人: 馮憲平,香港城市大學
地點: beat365中215
時間: 2024年9月20日 (星期五) 15:00-17:00
主持 聯系人: 朱瑞 (Tel: 62750853)
主講人簡介: 馮憲平教授現任香港城市大學系統工程系教授,并擔任工學院副院長。他在台灣清華大學取得了學士、碩士和博士學位。随後,他在美國麻省理工學院完成了博士後研究。此前,馮教授曾在台灣積體電路制造公司(TSMC)擔任工程師,主任工程師,副理和技術副理,之後在健鼎科技公司任副處長。馮教授的研究專注于通過開發化學添加劑來優化材料性能和操控電化學系統,應用于熱能轉換、鈣钛礦光伏和半導體制造等領域。他獲得的獎項和榮譽包括:第五屆國際發明創新大賽金獎及前十佳發明獎、化學工程師協會(IChemE)全球獎的創業獎和能源獎、香港工程師學會創新獎、日内瓦國際發明展第48屆金獎、日内瓦國際發明展第49屆評審金獎、國際先進材料協會(IAAM)科學家獎章及先進材料獎。此外,他被授予皇家化學學會會士(FRSC)、國際先進材料協會會士(FIAAM)、國際先進材料協會(IAAM)會士和Vebleo會士。

My research focuses on the development of new electrochemical technology for ionic thermoelectric, perovskite photovoltaic, and semiconductor manufacturing. This talk will be divided into two parts. Firstly, further improvements in perovskite solar cells require better control of ionic defects in the perovskite photoactive layer during the manufacturing stage and their usage. Therefore, various passivation strategies have been developed to improve the reliability. However, most of the traditional passivators interact with ionic defects and are then confined to certain locations after the manufacturing stage, making it difficult to passivate newly generated defects during device operation and storage. In this talk, I will discuss recent progress in developing “living passivator” that can be activated by environmental stresses and continuously release new passivators to ensure the stability of perovskite solar cells. Secondly, we developed effective additives for the fabrication of nanocrystalline copper with uniform nanograin sizes and low impurity levels, which enables fast grain growth and facilitates cross-interface Cu-to-Cu bonding at low temperatures. The combination of a low thermal budget and superior bonding quality offers a promising approach for the development of fast and low-temperature bonding processes for advanced electronic and 3DIC packaging applications.