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諶玉真 教授 / Yu-Jane Sheng Professor

電腦分子模擬研究室 Molecular Simulation Lab 二館 分子模擬熱力學高分子物理 Polymer PhysicsThermodynamically Equilibrium Systems with Charged Interfaces (02)3366-3014 BLDG.II (02)3366-3062 yjsheng@ntu.edu.tw N309 諶玉真 Yu-Jane Sheng 化工二館(鄭江樓) CheE BLDG.II 教授 Professor N314
    • 學經歷
      • 台灣大學    化工學士,1986
      • 台灣大學    化工碩士,1988
      • 美國康乃爾大學 化工博士,1995

     

    • 研究主題
      • 高分子物理
        高分子產物在人類的生活中已成為不可或缺的物質,但由於其結構遠較一般簡單分子複雜,我們對它功能的瞭解及研發的工作,常僅止於經驗式的進行。本研究小組即是利用電腦模擬與統計熱力學的方式,嘗試由微觀層次來研究高分子系統宏觀特性,希望能藉此更進一步瞭解高分子的熱力性質與動態行為。細胞對於材料表面地形的反應:
        研究材料表面的微/奈米地形,對於細胞形態、貼附、生長與分化的影響,以調控細胞行為及應用於組織工程。
      • 含帶電界面之熱力平衡系統
        靜電作用是隨距離一次方遞減的長距離作用,即r-1;該特性使得有關含離子系統的研究,如生物與奈米系統,變得相當棘手。與高分子系統類似,這種系統常需考慮複雜的多體作用。我們著重於以平均場理論初步地瞭解系統的熱力學性質;再以分子模擬的方法探討離子擾動性與相關性對這類系統的影響。

     

    • 最新研究
      • Determination of biopolymer conformation and chain length by a nanopore :molecular simulations 以奈米孔洞辨識生物高分子之構形與長度 : 分子模擬 Sheng, Yu-Jane, sponsored by National Science Council #NSC98-2221-E-002-085-, NT$ 945,000, 8/1/2009-7/31/2010.
      • 梳狀型帶有聚醚鏈段之高分子及其共價鍵結奈米粒子複合結構之精準合成與應用(2/3) 奈米國家型科技計畫共同主持人 NT$ 7,000,000, 8/1/2008 – 7/31/2011
    1. 張弘郁同學 (諶玉真教授指導) 2014台灣化學工程學會61週年年會暨科技部化學 工程學門成果發表會學生英語專題報告競賽優勝獎
    2. 榮獲臺灣大學106學年度教學優良獎
    3. “Structural and Mechanical Characteristics of Polymersomes,” 獲選為2014年Soft Matter之 Highlight
    4. 2014 台灣化學工程學會 61 週年年會暨科技部化學工程學門成果發表會海報評審委員
    5. 熱力與界面領域之邀請演講者,化工年會,Nov. 6-7,高雄,台灣 (2015)
    6. “Blending-induced helical morphologies of confined linear triblock copolymers,” 獲選為2016年「台灣化學工程學會傑出論文獎」
    7. 獲得2011-2017年國立臺灣大學學術研究績效獎勵
    8. 2016 Fall Progress in Mathematical and Computational Studies on Science and Engineering Problems, invited speaker. Nov. 30 – Dec. 2 (2016)
    9. One of the top 100 reviewers for Langmuir in 2016
    10. 獲得2018-2020年國立臺灣大學學術研究績效加給
    11. 王亭雅同學 (諶玉真教授指導)台灣化學工程學會67週年年會暨科技部化工學門成果發表會在學生競賽-學生口頭(Oral)競賽獲得優等(Excellence award)
    1. ZhengjiaWang, Kang-Ching Chu, Heng-Kwong Tsao and Yu-Jane Sheng, “Preferred penetration of active nano-rods into narrow channels and their clustering,” Phys. Chem. Chem. Phys., 23, 16234-16241 (2021) (SCI, EI).
    2. Yi-Ting Cheng, Heng-Kwong Tsao and Yu-Jane Sheng, “Interfacial assembly of nanorods: smectic alignment and multilayer stacking,” Nanoscale, 13, 14236-14244 (2021) (SCI, EI).
    3. Kang-Ching Chu, Heng-Kwong Tsao, and Yu-Jane Sheng, “Spontaneous spreading of nanodroplets on partially wetting surfaces with continuous grooves: synergy of imbibition and capillary condensation”, J. Mol. Liq. 339, 117270 (2021) (SCI, EI).
    4. Trung Hieu Vo, Phuc Khanh Lam, Yu-Jane Sheng and Heng-Kwong Tsao “Amphibious superamphiphilic polystyrene monolith with underwater superoleophilicity: capture of underwater oil,” Appl. Surf. Sci. 570, 151142 (2021) (SCI, EI).
    5. Guan-Yu He, Heng-Kwong Tsao, and Yu-Jane Sheng “Imbibition dynamics in an open-channel capillary with holes,” J. Mol. Liq. 349, 118117 (2022) (SCI, EI).
    6. Yu-Ming Huang, Yu-Jane Sheng, Heng-Kwong Tsao “Peculiar encounter between self-propelled droplet and static droplet: swallow, rerouting, and recoil,”   J. Mol. Liq. 347, 118378 (2022) (SCI, EI).
    7. Ting-Ya Wang, Hsin-Yu Chang, Guan-Yu He, Heng-Kwong Tsao, and Yu-Jane Sheng, “Anomalous spontaneous capillary flow of water through graphene nanoslits: channel width-dependent density,” J. Mol. Liq. 352, 118701 (2022) (SCI, EI).
    8. Karthik Nuthalapati, Yu-Jane Sheng, Heng-Kwong Tsao, “Anomalous interfacial dynamics of pendant droplets of N,N-dimethylformamide containing Silwet, ” J. Taiwan Inst. Chem. E., 133, 104282 (2022) (SCI, EI).
    9. Kang-Ching Chu, Yu-Hao Tsao, Heng-Kwong Tsao and Yu-Jane Sheng, “Spontaneous formation of nanopores within a nanofilm: phase diagram and multiple stable states,” J. Mol. Liq. 360, 119541 (2022) (SCI, EI).
    10. Karthik Nuthalapati, Yu-Jane Sheng, Heng-Kwong Tsao, “Abnormal wetting dynamics of Silwet-laden droplets on partially wetting substrates,” Colloids Surf. A Physicochem. Eng. Asp., 648, 129381 (2022) (SCI, EI).
    11. Hsin-Yu Chang, Yu-Jane Sheng and Heng-Kwong Tsao “Packing microstructures and thermal properties of compressed emulsions: effect of droplet size,” J. Mol. Liq. 364, 120025 (2022) (SCI, EI).
    12. Yueh-Chi Tseng, Hsin-Yu Chang, Yu-Jane Sheng and Heng-Kwong Tsao “Atypical vesicles and membranes with monolayer and multilayer structures formed by graft copolymers with diblock side-chains: nonlamellar structure and curvature-enhanced permeability,” Soft Matter 18, 7559 (2022) (SCI, EI).
    13. Guan-Yu He, Heng-Kwong Tsao, and Yu-Jane Sheng “Wicking dynamics into two-rail open channel with periodical branches,” Phys. Fluids 34, 102004 (2022) (SCI, EI).
    14. Yi-Ting Cheng, Hsin-Yu Chang, Heng-Kwong Tsao, Yu-Jane Sheng “Imbibition dynamics and steady flows in graphene nanochannels with sparse geometric and chemical defects,” Phys. Fluids 34, 112003 (2022) (SCI, EI).
    15. Hsin-Jou Huang, Karthik Nuthalapati, Yu-Jane Sheng, Heng-Kwong Tsao, “Precursor film of self-propelled droplets: inducing motion of a static droplet,” J. Mol. Liq. 368, 120729 (2022) (SCI, EI).
    16. Yen-Chih Chiu, Trung Hieu Vo, Yu-Jane Sheng, Heng-Kwong Tsao, “Spontaneous formation of microgels for 3D printing supporting medium,” ACS Appl. Polym. Mater. 5, 764-774 (2023) (SCI, EI).
    17. Wen-Zhen Hsieh, Yu-Hao Tsao, Heng-Kwong Tsao, Yu-Jane Sheng “Diverse wetting behavior of a binary mixture of antagonist liquids: nanodroplet with finite precursor film and leak-out phenomenon” J. Mol. Liq. 372, 121197 (2023) (SCI, EI).
    18. Karthik Nuthalapati, Yu-Jane Sheng, Heng-Kwong Tsao “Atypical wetting behavior of binary mixtures of partial and total wetting liquids: leak-out phenomena” Colloids Surf. A: Physicochem. Eng. Asp. 666, 131299 (2023).
    19. Karthik Nuthalapati, Yu-Jane Sheng, Heng-Kwong Tsao “Evaporation-driven directed motion of droplets on the glass” Surf. Interfaces in press (2023) (SCI, EI).
    20. Hsin-Yu Chang, Heng-Kwong Tsao, Yu-Jane Sheng “Solid-like elastic behavior of nanosized concentrated emulsions: size-dependent Young’s and bulk moduli” J. Mol. Liq. in press (2023) (SCI, EI).