查詢結果分析
來源資料
頁籤選單縮合
| 題 名 | 氧化鎵基半導體材料於非酶性生醫感測器之應用探索=Exploration of Gallium Oxide-based Semiconductors for Nonenzymatic Biomedical Sensor Applications |
|---|---|
| 作 者 | 周鑫佑; 江維翔; 張耀錡; 吳耕宏; 江榮隆; 武東星; | 書刊名 | 科儀新知 |
| 卷 期 | 244 2025.09[民114.09] |
| 頁 次 | 頁55-72 |
| 專 輯 | 「化合物半導體驅動材料新革命」專題 |
| 分類號 | 448.65 |
| 關鍵詞 | 氧化鎵基薄膜; 生醫感測; 半導體材料; |
| 語 文 | 中文(Chinese) |
| 中文摘要 | 本研究以多種製程技術於各類基板沉積氧化鎵基薄膜,並整合延伸閘極場效電晶體(extended-gate field-effect transistor, EGFET)架構,開發多功能非酵素型生理感測器。利用薄膜對化合物的選擇性吸附與高穩定性,實現對pH、葡萄糖、氨氮與細胞活性之高靈敏檢測。感測器不需酵素修飾,具低成本與長期保存優勢。生物相容性評估顯示無細胞毒性,適用於長期生醫監控。結果顯示氧化鎵基半導體為具潛力之多功能生醫與環境感測材料。 |
| 英文摘要 | This study employed various deposition techniques to fabricate gallium oxide-based thin films on multiple substrates and integrated them into extended-gate field-effect transistor (EGFET) structures for multifunctional, nonenzymatic physiological sensing. Leveraging the films' high stability and selective compound adsorption, the sensors achieve sensitive detection of pH, glucose, ammonia nitrogen (NH_3-N), and cell viability. Enzyme-free design reduces cost and extends storage life. Biocompatibility tests confirm noncytotoxicity, making the devices suitable for long-term biomedical monitoring. The results demonstrate gallium oxide-based semiconductors as promising materials for multifunctional biosensors in healthcare and environmental applications. |
本系統中英文摘要資訊取自各篇刊載內容。