以浮閘極非揮發層狀記憶體開發神經細胞為基底之場效應電晶體於神經突觸訊號傳遞之偵測

  • 刊登日期: 2020-04-06
執行方法及步驟 Combine 2D floating-gate electronics, triboelectronics, and neurons to neuron-based field effect transistors.
執行績效
  • L. U. Vinzons, S.-P. Lin*. Semiconductor Biosensors Based on Nanowire Field-Effect Transistors. In: Han-Sheng Chuang and Yi-Ping Ho, editors. in Advances in Biosensing Technology for Medical Diagnosis. Chapter 4. pp. 99–168, Bentham Science (2020).
  • C. Gao, M.-P. Lee, M. Li, K.-C. Lee, F.-S. Yang, C.-Y. Lin, K. Watanabe, T. Taniguchi, P.-W. Chiu, C.-H. Lien, W.-W. Wu, S.-P. Lin*, W. Li*, Y.-F. Lin* and J. Chu, “Mimic Drug Dosage Modulation for Neuroplasticity based on Charge-trap Layered Electronics”, Advanced Functional Materials, adfm.202005182, (2020)
  • M. Li*, F.-S. Yang, H.-C. Hsu, W.-H. Chen, C.-N. Kuo, J.-Y. Chen, S.-H. Yang, T.-H. Yang, C.-Y. Lin, Y. Chou, M.-P. Lee, Y.-M. Chang, Y.-C. Yang, K.-C. Lee, Y.-C. Chou, C.-H. Lien, C.-L. Lin, Y.-P. Chiu, C.-S. Lue*, S.-P. Lin*, Y.-F. Lin*, “Defect Engineering in Ambipolar Layered Materials for Mode-Regulable Nociceptor”, Advanced Functional Materials, adfm.202007587 (2020).
  • Ko-Chun Lee, Mengjiao Li,*, Yu-Hsiang Chang, Shih-Hsien Yang, Che-Yi Lin, Yuan-Ming Chang, Feng-Shou Yang, Kenji Watanabe, Takashi Taniguchi, Ching-Hwa Ho, Chen-Hsin Lien, Shu-Ping Lin, Po-Wen Chiu*, Yen-Fu Lin*, “Inverse Paired-pulse Facilitation in Neuroplasticity based on Interface-boosted Charge Trapping Layered Electronics”, Nano Energy, Volume 77, 2020, 105258.
  • Siang-Sin Shan, Shao-Yung Lu, Yuan-Po Yang, Shu-Ping Lin, Patrick Carey, Minghan Xian, Fan Ren, Stephen Pearton, Chin-Wei Chang, Jenshan Lin, Yu-Te Liao*, “A Two-electrode, Double-pulsed Sensor Readout Circuit for Cardiac Troponin I Measurement”, IEEE Transactions on Biomedical Circuits and Systems, TBCAS.2020.3029912 (2020).
  • M. Li, W.-Y. Chen, Y.-C. Li, H.-M. Wu, Y.-C. Wu, H.-W. Lu, S.-L. Cheng, L. Li, K.-C. Chang, H.-J. Liu, Y.-F. Lin,*L.-Y. Lin,*Y.-C. Lai* “Deformable, resilient, and mechanically-durable triboelectric nanogenerator based on recycled coffee waste for wearable power and self-powered smart sensors, Nano Energy, 105405.(2020).
  • F. S. Yang, M. Li*, M. P. Lee, I. Y. Ho, J. Y. Chen, H. Ling, Y. Li, J. K. Chang, S. H. Yang, Y. M. Chang, K. C. Lee, Y. C. Chou, C. H. Ho, W. Li*, C. H. Lien*, and Y. F. Lin*; “Oxidation-boosted Charge Trapping in Ultra-sensitive van der Waals Materials for Artificial Synaptic Features”, Nature Communication 11, 2972 (2020).
  • J. Yang, D. Tang, J. Ao, T. Ghosh, T. V. Neumann, D. Zhang, E. Piskarev, T. Yu, V. K. Truong, K.Xie, Y.‐C. Lai, Y. Li,* M. D. Dickey,* Ultrasoft Liquid Metal Elastomer Foams with Positive and Negative Piezopermittivity for Tactile Sensing, Advanced Functional Materials, 2020, 2002611 (2020).
  •  M.-S. Tsai#, T. L. Shen#, H.-M. Wu#, Y.-M. Liao, Y.-K. Liao, W.-Y. Lee, H.-C. Kuo, Y.-C. Lai,* and Y.- F. Chen,* ,Self-powered, Self-healed and Shape-adaptive Ultraviolet Photodetectors ,ACS Applied Materials & Interfaces, 12, 9755. (2020).
  • K.-C. Chang,* T. Dai, L. Li, X. Lin, S. Zhang, Y.-C. Lai, H.-J. Liu, Y.-E. Syu, Unveiling the Influence of Surrounding Material and Realization of Multi-Level Storage in Resistive Switching Memory, Nanoscale,  2020,12, 22070-22074 (IF=6.895)
  • K. Qi,  Lei Li, K.-C. Chang,* X. Lin,* Y.-C. Lai, H. Zheng, G. Huang,  T.-P. Kuo, A supercritical Removal Method: Rapid Elimination of Impurities in Polymethyl- methacrylate at Near Room Temperature and Mechanism Investigation of Insulating Property Improvement, Journal of Materials Chemistry C, 8, 15664-15668 (2020)
  • V. Vallem, Y. Sargolzaeiaval, M. Ozturk, Y.-C. Lai, M. D. Dickey*, Energy Harvesting and Storage with Soft and Stretchable Materials, Advanced Materials, adma.202004832 (2020).
結論與建議
  1. 未來申請計畫
  • 工程司: 橋接生物和人工神經網路以開發生物混合突觸和神經形態義肢 (PI: 林淑萍 副教授)
  • 工程司: 液態金屬紡線用於回收環境電磁波能量作為新穿戴能源 (PI: 賴盈至 副教授)
  • 工程司: 多功能材料於軟性「智能」機器人(PI: 賴盈至 副教授)
  1. 已申請計畫
  • 2020-2021: 開發奈米實驗室晶片平台於腦外泌體的偵測 NT: 1,055,000 (PI: 林淑萍 副教授)
  • 2019-2020: 開發多功健康監測之自給供電超薄柔性穿戴電子裝置 NT: 1,232,000 (PI: 林淑萍 副教授)
  • 2020-2023: 從量子物理到元件物理學,從相變金屬態到半導體特性:探索低維度元件的魅力 NT: 17,460,000 (PI: 林彥甫 副教授)
  • 2019-2022: 建構光與電複合式量測平台用以探索新穎奈米系統之電學傳輸機制與空間解析光電特徵 NT: 9,546,000 (PI: 林彥甫 副教授)
  • 邁向電力熵時代:追朔物質間電荷轉移的起源、控制暨其和半導體與環境能源的關係 NT: 7,905,000 (PI: 賴盈至 副教授)
附件