成員介紹

Member Introduction

師資陣容

獲獎經歷

  • 112 輔仁大學永續教研留才彈薪獎勵
  • 111 學年度校內指標性期刊引用次數獎勵
  • 111 輔仁大學永續教研留才彈薪獎勵
  • 110 科技部補助大專校院研究獎勵

研究領域

  • 物理化學
  • 生物物理
  • 奈米生醫

研究方向

  1. 深入探討奈米材料的催化機制和照光對催化活性的影響,以利對類酶活性進行調控。
  2. 研究新穎材料的類酶活性,藉由酵素動力學量測,評估材料的催化能力,並將材料的類酶活性開發作為感測平台。
  3. 利用分子結構設計對有機小分子的光誘發類氧化酶活性進行調控。

學術著作

  1. T.-R. Tseng,* C.-H. Yang,* H.-C. Lu, C.-P. Liu, and B.-M. Cheng* “Analysis of Carbon Materials with Infrared Photoacoustic Spectroscopy.” Anal. Chem. 96, 10732−1073 (2024).
  2. Y.-H. Yu,* X.-Y. Lin, K.-L. Teng, W.-F. Lai, C.-C. Hu, C.-H. Tsai, C.-P. Liu,* H.-L. Lee, C.-H. Su, Y.-H. Liu,* K.-L. Lu,* and S.-Y. Chien, “Two-dimensional nanosheets synthesis of (Cu-S)n metal-organic framework applied as peroxidase mimics for detection of glutathione.” Inorg. Chem. 62, 17126 (2023).
  3. I.-H. Li, T.-H. Hsieh, Z.-W. Chen, H.-C. Tsao, Y.-H. Huang, and C.-P. Liu,* “Understanding gold nanoparticles decorated on silica as oxidase mimics and application of the light-enhanced oxidase-like activity for detection of acetylcholinesterase.“ J. Photochem. Photobiol. A 445, 115078 (2023).
  4. H.-H. Yu, P.-H. Lin, Z.-B. Chen, Z.-W. Chen, Y.-J. Chen, W.-M. Liu,* and C.-P. Liu,* “Molecular engineering to boost the photo-oxidase activity of molecular rotors in colorimetric sensing of temperatures.“ Chem. Eur. J. 29, e202301591 (2023).
  5. H.-Y. Chen, C.-S. Teng, P.-H. Lin, C.-P. Liu, W.-M. Liu,* and L.-K. Chu,* “Noncovalent association thermodynamics of turn-on fluorescent probes with human serum albumin: Dual-concentration ratio method.“ ChemBioChem 24, e202300370 (2023).
  6. P. Thanasekaran, J.-H. Huang, C.-R. Jhou, H.-C. Tsao, S. Mendiratta, C.-H. Su, C.-P. Liu,* Y. H. Liu,* J.-H. Huang*, K.-L. Lu*, Neutral mononuclear rhenium(I) complex with rare in-situ generated triazolyl ligand for luminescence “turn-on” detection of histidine. Dalton Trans. 52, 703 (2023).
  7. P.-Y. Yu, Y.-S. Chen, H.-H. Yu, F.-I Chen, Z.-W. Chen, and C.-P. Liu,* “The photo-activated oxidase-like activity of gold nanoclusters: implication for singlet oxygen.” J. Photochem. Photobiol. A 432, 114063 (2022).
  8. Z.-W. Chen, T.-H. Hsieh, and C.-P. Liu,* “Production of carbon dots by laser ablation: precursors and photo-oxidase properties.” J. Chin. Chem. Soc. 69, 193-199 (2022).
  9. Y.-S. Chen, Z.-W. Chen, Y.-W. Yuan, K.-C. Chen, and C.-P. Liu,* “Fluorescence quenchers manipulate the peroxidase-like activity of gold-based nanomaterials.” ACS Omega 5, 24487-24494 (2020).
  10. P.-T. Huang,* Y.-N. Chen, K.-C. Chen, S.-H. Wu, and C.-P. Liu,* “Confinements of silver nanoparticles in polystyrenes through molecular entanglements and their application for catalytic reduction of 4-nitrophenol.” J. Mater. Chem. A 7, 20919-20925 (2019).
  11. C.-P. Liu,* K.-C. Chen, C.-F. Su, P.-Y. Yu, and P.-W. Lee “Revealing the active site of gold nanoparticles for the peroxidase-like activity: the determination of surface accessibility.“ Catalysts 9, 517 (2019).
  12. S.-P. Sun, C.-P. Liu, I.-P. Huang, C.-H. Chu, M.-F. Chung, S.-H. Cheng, S.-Y. Lin, and L.-W. Lo,* “A co-delivery nanosystem of chemo- therapeutics and DNAzyme overcomes cancer drug resistance and metastasis,” Nano Futures 1, 035005 (2017).
  13. C.-P. Liu,* T.-H. Wu, C.-Y. Liu, K.-C. Chen, Y.-X. Chen, G.-S. Chen, and S.-Y. Lin,* “Self-supplying O2 through the catalase-like activities of gold nanoclusters for photodynamic therapy against hypoxic cancer cells,” Small 13, 1700278 (2017).
  14. C.-P. Liu, T.-H. Wu, C.-Y. Liu, Y.-L. Lin, S. Wang, and S.-Y. Lin,* “Tailoring enzyme-like activities of gold nanoclusters by polymeric tertiary amines for protecting neurons against oxidative stress,” Small 12, 4127-4135 (2016).
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