科研情況: ? 主要研究方向: 1、分析化學(xué)、納米孔道生物傳感、電化學(xué)分析 2、新能源材料與器件、仿生離子選擇性膜收集鹽差能 3、物理化學(xué)、微納流體離子輸運(yùn)特性 4、材料化學(xué)、(天然)高分子材料、仿生智能納米薄膜材料 ? 近5年項(xiàng)目: 1、“**計(jì)劃”湖南省高層次青年人才,納米孔道生化傳感與能量轉(zhuǎn)化,執(zhí)行時(shí)間:2023.10-2026.9;50萬(wàn),主持。 2、國(guó)家自然科學(xué)基金青年項(xiàng)目(22204007),基于雙納米限域協(xié)同效應(yīng)的雪茄形孔道傳感平臺(tái)構(gòu)建及其對(duì)單個(gè)淀粉樣蛋白動(dòng)態(tài)精準(zhǔn)檢測(cè)研究,執(zhí)行時(shí)間:2023.01-2025.12;30萬(wàn),在研,主持。 3、長(zhǎng)沙理工大學(xué)科研啟動(dòng)項(xiàng)目(6090201-000100302),仿生納米孔道生物傳感研究;執(zhí)行時(shí)間:2022.10-2024.10;12萬(wàn),在研,主持。 4、瑞士國(guó)家研究中心(NCCR)博士后基金,神經(jīng)退行性疾病淀粉樣蛋白的納米孔單分子分析;執(zhí)行時(shí)間:2020.01-2022.12;125萬(wàn),結(jié)題,主持。 ? 近5年科研論文: 1.T. Ma, S. Tan, R. Yuan, X. Kang, P. Guo, Y. Tong, T. Zhao, Z. Xiao, Z. Cao, L. Li, S. Balme, Highly sensitive and low-cost detecting and recovering Ce3+ from ammonia nitrogen wastewater using bio-inspired nanochannel/membrane. Chemical Engineering Journal. 2023, 475, 146084 (一區(qū),IF=15.1) 2.C. Ying*, T. Ma*, L. Xu, M. Rahmani, Localized Nanopore Fabrication via Controlled Breakdown. Nanomaterials. 2022, 12(14), 2384 (二區(qū),IF=5.719) 3.T-J. Liu*, T. Ma*, C-Y. Lin, S. Balme, J. Hsu, Origin of Ultrahigh Rectification in Polyelectrolyte Bilayers Modified Conical Nanopores. Journal of Physical Chemistry Letters, 2021, 12, 49, 11858–11864. (一區(qū), IF=6.888) 4.T. Ma, N. Arroyo, J-M. Janot, F. Picaud, S. Balme, Conformation of Poly(ethylene glycol) inside nanopore: simulation and experimental approaches. Nanomaterials. 2021, 11(1), 244. (二區(qū),IF=5.719) 5.T. Ma, J-M. Janot, S. Balme, Track Etched Nanopore/Membrane: From Fundamental to Applications. Small Methods, 2020, 4, 9, 2000366. (一區(qū), IF=15.367) 6.T. Ma, E. Balanzat, J-M. Janot, S. Balme, Dynamics of Long Hyaluronic Acid Chains through Conical Nanopore for Characterizing Enzyme Reactions in Confined Space. Nanoscale, 2020,12, 7231-7239. (一區(qū), IF=8.307) 7.C-Y. Lin*, T. Ma*, Z. Siwy, S. Balme, J-P. Hsu, Tunable Current Rectification and Selectivity Demonstrated in Nanofluidic Diodes through Kinetic Functionalization. Journal of Physical Chemistry Letters, 2020, 11, 1, 60–66. (一區(qū), IF=6.888) 8.T. Ma, E. Balanzat, J-M. Janot, S. Balme, Conical track-etched Nanopore for a free-label detection of OSCS contaminants in heparin. Biosensors and Bioelectronics, 2019, 137, 207-212. (一區(qū),IF= 12.545) 9.T. Ma, E. Balanzat, J-M. Janot, S. Balme, Nanopore Functionalized By Highly Charged Hydrogels For Osmotic Energy Harvesting. ACS Applied Materials & Interfaces, 2019, 11, 13, 12578-12585. (一區(qū), IF=10.383) 10.T. Ma, P. Gaigalas, M. Lepoitevin, I. Plikusiene, M. Bechelany, J-M. Janot, E. Balanzat, S. Balme, Impact of Polyelectrolyte Multilayers on the Ionic Current Rectification of Conical Nanopores. Langmuir, 2018, 34 (11), pp 3405–3412. (二區(qū) top, IF=4.331) 11.T. Ma, M. Walko, M, Lepoitevin, E. Balanzat, J-M. Janot, A. Kocer, S. Balme, Combining Light‐Gated and pH‐Responsive Nanopore Based on PEG‐Spiropyran Functionalization. Advanced Materials Interfaces, 2017, 5, 1701051. (二區(qū), IF=6.389)
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