Yang,Chih-Wen / Research Specialist

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Contact Information

Education

Secretary

Chu, Yung-Ann / 886-2-2789-8364

Research Interest

Experience

  • 2013.1~present Research Specialist of Research assistant of Institute of Physics, Academia Sinica
  • 2012.1 ~2012.12 Postdoctoral researcher of Institute of Physics, Academia Sinica
  • 2010.9 ~2011.12 Postdoctoral researcher of Academia Sinica
  • 2010.4~ 2010.8 R&D Engineer of AU Optronics Corp.,
  • 2010.1 ~2010.4 Postdoctoral researcher of Academia Sinica
  • 2007.6 ~2009.12 Postdoctoral researcher of Institute of Physics, Academia Sinica
  • 2005~2007 R&D Engineer of AnsNanoTek, Co., Ltd.,
  • 1999~2004Research assistant of Institute of Physics, Academia Sinica

Publication

Journal Papers

  • [1]     Chih-Wen Yang, Keisuke Miyazawa, Takeshi Fukuma*, Kazuki Miyata, Ing-Shouh Hwang*, 2018, “Direct comparison between subnanometer hydration structures on hydrophilic and hydrophobic surfaces via three-dimensional scanning force microscopy”, Phys. Chem. Chem. Phys., 20, 23522-23527. (SCI) (IF: 4.123; SCI ranking: 26%,16.7%)

  • [2]     Min-Shao Tsai, Ming-Tsai Chiang, Dong-Lin Tsai, Chih-Wen Yang, Hsien-San Hou,Yi-Ru Li, Po-Chiao Chang, Heng-Huei Lin, Huan-Yuan Chen, Ing-Shouh Hwang, Pei-Kuen Wei, Chiao-Po Hsu, Kuo-I Lin, Fu-Tong Liu, Lee-Young Chau*, 2018, “Galectin-1 Restricts Vascular Smooth Muscle Cell Motility Via Modulating Adhesion Force and Focal Adhesion Dynamics”, SCIENTIFIC REPORTS, 8,11497. (SCI) (IF: 4.259; SCI ranking: 15.6%)

  • [3]     Hsien-Shun Liao,∗, Chih-Wen Yang, Hsien-Chen Ko, En-Te Hwu, Ing-Shouh Hwang, 2018, “Imaging initial formation processes of nanobubbles at the graphite–water interface through high-speed atomic force microscopy”, Applied Surface Science, 434, 913-917. (SCI) (IF: 3.387; SCI ranking: 5.3%,28.4%,31.5%,21.6%)

  • [4]     Chih-Wen Yang, Kwan-tai Leung, Ren-Feng Ding, Hsien-Chen Ko, Yi-Hsien Lu, Chung-Kai Fang, Ing-Shouh Hwang*, 2018, “Lateral Force Microscopy of Interfacial Nanobubbles: Friction Reduction and Novel Frictional Behavior”, SCIENTIFIC REPORTS, 8, 3125. (SCI) (IF: 4.259; SCI ranking: 15.6%)

  • [5]     N. Tomašovicová, C.-W. Yang, L. Balejcíková, V. Gdovinová, M. Kubovcíková, S. Hayryan, I.-S. Hwang, Chin-Kun Hu and P. Kopcanský, 2017, “Interaction of Magnetic Nanoparticles with Lyotropic Liquid Crystal Studied by AFM”, ACTA PHYSICA POLONICA A, 131, 958-960. (SCI) (IF: 0.469; SCI ranking: 88.6%)

  • [6]      Ren-Feng Ding, Chih-Wen Yang*, Kuang-Yuh Huang, Ing-Shouh Hwang*, 2016, “High-sensitivity imaging with lateral resonance mode atomic force microscopy”, Nanoscale, 8, 18421-18427. (SCI) (IF: 7.367; SCI ranking: 8.4%,14.9%,8.8%,12.7%)

  • [7]      Hsien-Chen Ko, Wei-Hao Hsu, Chih-Wen Yang, Chung-Kai Fang, Yi-Hsien Lu, Ing-Shouh Hwang*, 2016, “High-Resolution Characterization of Preferential Gas Adsorption at the Graphene−Water Interface”, LANGMUIR, 32 (43), 11164–11171. (SCI) (IF: 3.833; SCI ranking: 19.6%,27.7%,28.1%)

  • [8]     Cung-Kai Fang, Hsien-Chen Ko, Chih-Wen Yang, Yi-Hsien Lu, Ing-Shouh Hwang*, 2016, “Nucleation processes of nanobubbles at a solid/water interface”, Scientific Reports, 6, 24651. (SCI) (IF: 4.259; SCI ranking: 15.6%)

  • [9]     Yi-Hsien Lu, Chih-Wen Yang, Chung-Kai Fang, Hsien-Chen Ko, Ing-Shouh Hwang*, 2014, “Interface-Induced Ordering of Gas Molecules Confined in a Small Space”, Scientific Reports, 7189. (SCI) (IF: 4.259; SCI ranking: 15.6%)

  • [10]     Yi-Hsien Lu, Chih-Wen Yang, Ing-Shouh Hwang*, 2014, “Atomic Force Microscopy Study of Nitrogen Molecule Self-Assembly at the HOPG-Water Interface”, Applied Surface Science, 304, 56–64. (SCI) (IF: 3.387; SCI ranking: 5.3%,28.4%,31.5%,21.6%)

  • [11]     Chih-Wen Yang, Ping-Hsiang Su, En-Te Hwu, Hsien-Shun Liao, Ing-Shouh Hwang*, 2013, “Imaging soft matters in water with torsional mode atomic force microscopy”, ULTRAMICROSCOPY, 135, 121–125. (SCI) (IF: 2.843; SCI ranking: 10%)

  • [12]     Ren-Feng Ding, Shih-Hsiu Lai, Hsien-Shun Liao, Wei-Chiao Lai, Kuang-Yuh Huang , Chia-Seng Chang, Ing-Shouh Hwang, Chih-Wen Yang*, 2013, “Torsional Resonance Mode Atomic Force Microscopy in Liquid with Lorentz Force Actuation”, NANOTECHNOLOGY, 24, 305702. (SCI) (IF: 3.44; SCI ranking: 18.9%,40.2%,21.8%)

  • [13]     Chih-Wen Yang, Yi-Hsien Lu, Ing-Shouh Hwang*, 2013, “Imaging surface nanobubbles at graphite–water interfaces with different atomic force microscopy modes”, JOURNAL OF PHYSICS-CONDENSED MATTER, 25, 184010. (SCI) (IF: 2.678; SCI ranking: 34.3%)

  • [14]     Chih-Wen Yang, Yi-Hsien Lu, Ing-Shouh Hwang*, 2013, “Condensation of Dissolved Gas Molecules at a Hydrophobic/Water Interface”, CHINESE JOURNAL OF PHYSICS, 51, 174-186. (SCI) (IF: 0.514; SCI ranking: 84.8%)

  • [15]     Yi-Hsien Lu, Chih-Wen Yang, Ing-Shouh Hwang*, 2012, “Molecular Layer of Gaslike Domains at a Hydrophobic−Water Interface Observed by Frequency-Modulation Atomic Force Microscopy”, LANGMUIR, 28, 12691–12695. (SCI) (IF: 3.833; SCI ranking: 19.6%,27.7%,28.1%)

  • [16]     Chih-Wen Yang, Ing-Shouh Hwang*, 2010, “Soft-contact imaging in liquid with frequency-modulation torsion resonance mode atomic force microscopy”, NANOTECHNOLOGY, 21, 065710. (SCI) (IF: 3.44; SCI ranking: 18.9%,40.2%,21.8%)

  • [17]     En-Te Hwu, Shao-Kang Hung, C. W. Yang, Kuang-Yuh Huang, Ing-Shouh Hwang*, 2008, “Real-time detection of linear and angular displacements with a modified DVD optical head”, NANOTECHNOLOGY, 19, 115501. (SCI) (IF: 3.44; SCI ranking: 18.9%,40.2%,21.8%)

  • [18]     E.-T. Hwu, S.-K. Hung, C. W. Yang, I.-S. Hwang*, 2007, “Simultaneous detection of translational and angular displacements of micromachined elements”, APPLIED PHYSICS LETTERS, 91, 221908. (SCI) (IF: 3.411; SCI ranking: 19.6%)

  • [19]     C. W. Yang,Y. F. Chen, C. S. Chang, D. P. Tsai, I.-S. Hwang*, 2007, “Imaging of soft matter with tapping-mode atomic force microscopy and non-contact-mode atomic force microscopy”, NANOTECHNOLOGY, 18, 084009. (SCI) (IF: 3.44; SCI ranking: 18.9%,40.2%,21.8%)

  • [20]     M.H. Hsu, W.S. Hu, J.J. Lin, Y.J. Hsu, D.H. Wei, C.W. Yang, C.S. Chang, Y.T. Tao*, 2004, “H2S-Induced Reorganization of Mixed Monolayer of Carboxylic Derivatives on Silver Surface”, LANGMUIR, 20, 3641. (SCI) (IF: 3.833; SCI ranking: 19.6%,27.7%,28.1%)

  • [21]     C. W. Yang, W. C. Lin, F. H. Ho, H. J. Huang, M. Y. Chen, T. F. Tseng, C. H. Lee, C. J. Yeh, D. P. Tsai*, 2002, “Dynamic aperture of near-field super resolution structures”, JAPANESE JOURNAL OF APPLIED PHYSICS, 39, 982. (SCI) (IF: 1.384; SCI ranking: 66.9%)

  • [22]     C. W. Yang, S. Z. Lo, H. E. Jackson, D. P. Tsai*, 1999, “Imaging local index variations in an optical waveguide using a tapping-mode near-field scanning optical microscope”, APPLIED PHYSICS LETTERS, 75, 1039. (SCI) (IF: 3.411; SCI ranking: 19.6%)

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