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Renewable energy application of pulsed laser annealing perovskite quantum dots materials

  • Yen Ting Lin
  • , Jui Ting Hsieh
  • , Meng Lin Tsai
  • , Chan Shan Yang*
  • *此作品的通信作者

研究成果: 書貢獻/報告類型會議論文篇章

1   連結會在新分頁中打開 引文 斯高帕斯(Scopus)

摘要

With the advancement of the global economy and technology, energy demand has become an urgent issue, prompting heightened attention to environmental friendliness and sustainable development. Solar energy, as a significant renewable resource, has garnered widespread attention despite facing challenges in conversion efficiency. Perovskite materials, due to their cubic crystal structure exhibiting excellent optoelectronic properties and a broad spectrum response, along with low manufacturing costs, have emerged as a recent research focus. These materials have shown remarkable potential in solar cells, light-emitting devices, and photodetectors, offering high efficiency, tunable bandgaps, and scalable fabrication processes. This study enhances the optical performance and stability of perovskite quantum dots through femtosecond pulse laser annealing technology, thereby improving their quantum yield. Advanced optical systems are employed for analysis, fully leveraging the advantages of perovskite materials in photovoltaic conversion. This research not only provides foundational solutions to pressing energy challenges but also promotes the transition of society towards cleaner and more sustainable energy technologies. Moreover, it contributes to the advancement of more efficient solar technologies, promoting innovation and development in future energy sources, and effectively reducing dependence on non-renewable energy. This is of significant importance for environmental protection, ensuring a better living environment for the future generations.

原文英語
主出版物標題Nanoscale and Quantum Materials
主出版物子標題From Synthesis and Laser Processing to Applications 2025
編輯Andrei V. Kabashin, Maria Farsari, Masoud Mahjouri-Samani
發行者SPIE
ISBN(電子)9781510684522
DOIs
出版狀態已發佈 - 2025
事件Nanoscale and Quantum Materials: From Synthesis and Laser Processing to Applications 2025 - San Francisco, 美国
持續時間: 2025 1月 252025 1月 27

出版系列

名字Proceedings of SPIE - The International Society for Optical Engineering
13352
ISSN(列印)0277-786X
ISSN(電子)1996-756X

會議

會議Nanoscale and Quantum Materials: From Synthesis and Laser Processing to Applications 2025
國家/地區美国
城市San Francisco
期間2025/01/252025/01/27

UN SDG

此研究成果有助於以下永續發展目標

  1. SDG 7 - 可負擔的潔淨能源
    SDG 7 可負擔的潔淨能源

ASJC Scopus subject areas

  • 電子、光磁材料
  • 凝聚態物理學
  • 電腦科學應用
  • 應用數學
  • 電氣與電子工程

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