方牧懷

助研究員
Mu-Huai Fang  Mu-Huai Fang
(Page on ORCID)
Mail fangmuhuaigate.sinica.edu.tw
call 02-2787-3180
ID 0000-0003-1475-0200
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方牧懷

助研究員
Research Interests
    • Solid-state Materials
    • Battery Materials
    • Quantum Dots
    • Optoelectronic Materials
    • Phosphors
Narrative CV

方牧懷博士現為中央研究院應用科學研究中的助理研究員。他的研究興趣專注應用於「固態電池」、「短波紅外線光感測器」和「紅外線發光二極體」的材料設計。

他開發了一種新型過飽和驅動共沉澱合成法,用於合成鹵化物固態電解質,並應用於固態電池。此方法具備同時實現「調控固態電解質組成」與「大規模生產」的潛力,不僅止於學術研究層面,亦同時考量實際產業化過程中穩定量產的挑戰。他與中央研究院應用科學研究中心林時彥博士,合作開發了基於量子點工藝的石墨烯場效電晶體光感測器元件,這種元件無須冷卻且可於室溫下對900–1700 nm紅外線光源產生光電流訊號,偵測率(detectivity)可達~1012 Hz1/2 W-1。他還與台灣大學化學系梁文傑教授,合作開發可用於發光二極體的永續量子點–類玻璃體的奈米高分子複合材料,此種複合材料能以機械式與化學式方式進行回收,在不破壞含鎘量子點的結構與光學性質情況下,分離鎘元素達>99.9%,並得將回收的高分子與量子點重複利用,實現永續循環再利用。

他未來的研究旨在強化鹵化物固態電解質的液態合成法,證明此方法能實現「調控固態電解質組成」與「大規模生產」。他也將透過跨領域合作提高量子點短波紅外線光感測器的性能和化學穩定性,並將上述學術研究實際應用於現實生活。

Education
  • B.S. in Chemistry, National Taiwan University (NTU) (2014)
  • Ph.D. in Chemistry, National Taiwan University (NTU) (2018)
Positions and Career
  • Assistant Research Fellow, Research Center for Applied Sciences, Academia Sinica, Taipei, Taiwan (2021~present)
  • Postdoctoral Fellow, Department of Chemistry, National Taiwan University, Taipei, Taiwan (2019~2021)
Honors and Awards
  • 2023 Career Development Award, Academia Sinica
  • 2019 Scholarship for Postdoctoral Fellow, National Science and Technology Council
  • 2018 Outstanding Award, Chinese Chemical Society
  • 2018 Yan's Award of Thesis, National Taiwan University
  • 2018 Dean's Prize, College of Science, National Taiwan University
  • 2017 Excellent Conference Report Award, Rare-Earth Luminescent Materials Symposium
Selected Publications
  • Ali, S. S. S.; Khan, S. A.; Tsai, Y.-T.; Lee, C.-H.; Song, Y.-F.; Yin, G.-C.; Chang, C.-K.; Chuang, Y.-C.; Huang, S.-J.; Pao, C.-W.; Chen, T.-Y.; Fang, M.-H.* Supersaturation-Driven Co-Precipitation Enables Scalable Wet-Chemical Synthesis of High-Purity Na3InCl6 Solid Electrolyte for Sodium-Ion Batteries. Small 2025, 21, e09165.
  • Bilo, J. A. V.; Chang, C.-K.; Chuang, Y.-C.; Fang, M.-H.* Coprecipitation Strategy for Halide-Based Solid-State Electrolytes and Atmospheric-Dependent In Situ Analysis. ACS Appl. Mater. Interfaces 2024, 16, 27394–27399.
  • Jhang, A.-T.; Tsai, P.-C.; Tsai, Y.-T.; Lin, S.-Y.*; Fang, M.-H.* Quantum-Dots-in-Double-Perovskite for High-Gain Short-Wave Infrared Photodetector. Adv. Opt. Mater. 2024, 12, 240152.
  • Huang, P.-Y.; Zhang, Y.-Y.; Tsai, P.-C.; Chung, R.-J.; Tsai, Y.-T.; Leung, M.-k.; Lin, S.-Y.*; Fang, M.-H.* Interfacial Engineering of Quantum Dots–Metal-Organic Framework Composite Toward Efficient Charge Transport for a Short-Wave Infrared Photodetector. Adv. Opt. Mater. 2024, 12, 2302062.
  • Tsai, Y.-T.; Leśniewski, T.; Majewska, N.; Kamiński, M.; Barzowska, J.; Liu, E.-P.; Chen, W.-T.; Mahlik, S.*; Fang, M.-H.* Pressure/Temperature-Assisted Crystallographic Engineering–A Strategy for Developing the Infrared Phosphors. Chem. Eng. J. 2024, 490, 151596.