top of page

ENVIRONMENTAL & ENERGY DEVICE LAB.

FLEXIBLE OPTOELECTRONICS LAB.
1-s2.0-S0378775325005713-ga1_lrg.jpg

Microwave-plasma-processed self-catalyzed stainless steel fiber paper porous transport layer for anion exchange membrane water electrolysis.

 

Journal of Power Sources, vol. 640, p. 236735. (SCI, 4/30, Electrochemistry)

https://doi.org/10.1016/j.jpowsour.2025.236735

[May 03, 2025前的免費連結

https://authors.elsevier.com/a/1km0v1M7w0ibUH

本研究開發自催化不銹鋼纖維紙(氈)氣體擴散層(多孔傳輸層),可直接用在陰離子交換膜水電解析氧反應電極,不需要另外鍍觸媒,就有良好的催化效果。微波電漿的短時間處理(15秒),可以增加水電解性能。本研究同時比較了陰極乾式(Cathode-dry)和陰極濕式(Cathode-wet)的操作模式,陰極濕式較好一些,但兩者的50小時穩定性表現相當。5 cm2模組測試,2V時電流密度 > 2 A/cm2。

david-whipple-mU-wz7JlJMc-unsplash_Ravid.jpg
2024_Langmuir_OER NiMoO4 CP AEMWE_Journal Cover.jpg

陳建彰教授所指導之重點科技研究學院奈米工程與科學組碩士生闕振宸、博士生余碩恩同學、應力所碩士生吳幸真同學之研究成果獲American Chemical Society的Langmuir期刊選為期刊封面。Langmuir期刊全文

Enhanced Oxygen Evolution Reaction Performance of NiMoO4/Carbon Paper Electrocatalysts in Anion Exchange Membrane Water Electrolysis by Atmospheric-Pressure Plasma Jet Treatment

 Langmuir 2024, 40, 24675-24686

https://pubs.acs.org/doi/10.1021/acs.langmuir.4c03557

 

 

東元淨零碳排科技國際競賽 (2024 TECO Net Zero Tech International Contest)
NTU-AIAD, Advanced Net Zero Emission Technology Award (前瞻綠能產協零碳希望獎) 

Low-Cost Energy-Efficient APPJ Processed NiCo-Metalorganic Framework Electrocatalyst in anion exchange membrane water electrolysis (AEMWE)​

氫能科技,綠氫,常壓噴射電漿,金屬有機骨架,陰離子交換膜水電解

Hydrogen Technology, Green Hydrogen, APPJ NiCo-MOF AEMWE

​相關論文發表:Improved oxygen evolution reaction performance of NiCo-metal organic framework/carbon paper catalysts in anion exchange membrane water electrolysis via ultrafast atmospheric-pressure plasma jet processing, International Journal of Hydrogen Energy 113 (2025) 429-440.

https://doi.org/10.1016/j.ijhydene.2025.02.338

(Free access until April 24 2025)

https://authors.elsevier.com/a/1kiph1HxM58hiC

主要利用常壓噴射電漿(atmospheric-pressure plasma jet, APPJ)製程增進NiCo-MOF電解水觸媒在陰離子交換膜水電解模組(anion exchange membrane water electrolysis module, AEMWE)的效能,有效增加耐受性和觸媒效能。首先利用水熱法將NiCo-MOF鍍在碳紙上,再利用常壓噴射電漿進行處理。有效增加觸媒耐受性及效能。

 

​實驗主要貢獻:普智暉 (台大應力所碩士生)

實驗報告:余碩恩 (台大重點科技研究學院博士生)

影片製作:陳奇松 (台大應力所碩士生)

字幕配音:董芮妤 (台科大化工系博士生)

指導教授:陳建彰教授(台大應力所、台大重點科技研究學院、台大綠色材料高值化研究中心)、陳奕君教授(台大光電所)、王孟菊教授(台科大化工系)

 

隊長:普智暉 (台大應力所碩士生)

 

隊員:余碩恩(台大重點科技研究學院博士生)、闕振宸(台大重點科技研究學院碩士生)、陳奇松 (台大應力所碩士生)、洪柏彥 (台大應力所碩士生)、吳幸真 (台大應力所碩士生)、謝尚霖 (台科大化工系碩士生)、董芮妤 (台科大化工系博士生

S__112967683_0.jpg

影片前半為投影片介紹,影片後半有實驗過程介紹

相關論文發表:Improved oxygen evolution reaction performance of NiCo-metal organic framework/carbon paper catalysts in anion exchange membrane water electrolysis via ultrafast atmospheric-pressure plasma jet processing, International Journal of Hydrogen Energy 113 (2025) 429-440.               https://doi.org/10.1016/j.ijhydene.2025.02.338

(Free access until April 24 2025)

https://authors.elsevier.com/a/1kiph1HxM58hiC

陳建彰教授所指導之重點科技研究學院奈米工程與科學組博士生余碩恩同學、本所碩士生蘇昱倫同學之研究成果獲American Chemical Society的Langmuir期刊選為期刊封面。

Langmuir期刊全文
Direct Current Pulse Atmospheric Pressure Plasma Jet Treatment on Electrochemically Deposited NiFe/Carbon Paper and Its Potential Application in an Anion-Exchange Membrane Water Electrolyzer, Langmuir 2024, 40, 14978−14989
https://doi.org/10.1021/acs.langmuir.4c01169

2024_Langmuir_APPJ ED NiFeCP AEMWE_Journal Cover.jpg
david-whipple-mU-wz7JlJMc-unsplash_Ravid.jpg
S__199344213.jpg
  • 2023東元淨零碳排科技競賽佳作獎 (146隊入選21隊),「鎳鐵金屬有機骨架/鎳鐵氧化物混成電催化材料於鹼性電解水之應用」,(指導教授:台大應力所陳建彰教授、中正機械系陳永松教授、台大光電所陳奕君教授;參賽學生:台大應力所王英齊、台大重點科技研究學院余碩恩、台大應力所蘇昱倫)

https://youtu.be/SU4v-qVDiQ4?si=44tacKPZ5mNr2fzB

  • 2023未來科技獎,「高效產氫產氧雙功能非鉑全水分解電催化觸媒」, (台大材料系謝宗霖教授、台大化工系何國川教授、台大應力所陳建彰教授、中正機械系陳永松教授)

前瞻02 高效產氫產氧雙功能非鉑全水分解電催化觸媒_大會照片.jpg
LINE_ALBUM_20240718光電應力團拍碩士服🎓_240718_5.jpg

RESEARCH

Atmospheric-pressure plasma
Dielectric barrier discharge plasma
Hydrogen technology: hydrogen generation technique

Anion exchange membrane water electrolysis
Microwave plasma
Super
capacitors

RESEARCH

Transparent metal oxide semiconductor thin-film devices 
Flexible electronics and optoelectronics

Wearable sensors and devices
Dye-sensitized solar cells
Perovskite solar cells

LINE_ALBUM_2025116 Group Lunch_20250116_3.jpg

CONTACT US

Graduate Institute of Applied Mechanics, National Taiwan University
Graduate Institute of Photonics and Optoelectronics, Department of Electrical Engineering, National Taiwan University

No. 1, Sec. 4, Roosevelt Rd., Taipei 10617, Taiwan

+886 2 3366 9423

©2018 by JZC105. Proudly created with Wix.com

bottom of page