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미래를 창조하는 포스텍 화학공학과

번호 내 용
72
  • [이진우, 한정우 교수 연구실]
  • A novel strategy to develop non-noble metal catalyst for CO2 electroreduction: Hybridization of metal-organic polymer
  • Applied Catalysis B: Environmental 236 (2018) p154-161.
71
  • [한정우교수 연구실]
  • Mechanistic insight into the quantitative synthesis of acetic acid by direct conversion of CH4 and CO2: An experimental and theoretical approach
  • Appl. Catal. B-Environ. 2018, 229 p237-248
70
  • [노준석교수 연구실-표지논문]
  • Amino-acid- and peptide-directed synthesis of chiral plasmonic gold nanoparticles
  • Nature 2018, 556, p360–365
69
  • [박태호교수 연구실]
  • Green-solvent processable semiconducting polymers applicable in additive-free perovskite and polymer solar cells: molecular weights, photovoltaic performance, and thermal stability
  • Journal of Materials Chemistry A 2018, 6, p5538-5543
68
  • [차형준교수 연구실-Hall of Fame Article]
  • Biomimetic Surface Engineering of Biomaterials by Using Recombinant Mussel Adhesive Proteins
  • Advanced Materials Interfaces 2018, p1800068
67
  • [박태호교수 연구실]
  • Exploiting π−π Stacking for Stretchable Semiconducting Polymers
  • Macromolecules 2018, 51, p2572−2579
66
  • [한정우교수 연구실]
  • Suppression of Cation Segregation in (La,Sr)CoO3−δ by Elastic Energy Minimization
  • ACS Appl. Mater. Interfaces, 2018, 10 (9), pp 8057–8065.
65
  • [박태호교수 연구실]
  • Improving the Performance and Stability of Inverted Planar Flexible Perovskite Solar Cells Employing a Novel NDI-Based Polymer as the Electron Transport Layer
  • Advanced Energy Materials 2018, 1702872
64
  • [차형준교수 연구실-표지논문]
  • Diatom-Inspired Silica Nanostructure Coatings with Controllable Microroughness Using an Engineered Mussel Protein Glue to Accelerate Bone Growth on Titanium-Based Implants
  • Advanced Materials 2017, 29(46), p1704906
63
  • [박태호교수 연구실]
  • Systematically Optimized Bilayered Electron Transport Layer for Highly Efficient Planar Perovskite Solar Cells (η = 21.1%)
  • ACS Energy Lett., 2017, 2, pp 2667–2673
62
  • [박태호교수 연구실]
  • p-Type CuI Islands on TiO2 Electron Transport Layer for a Highly Efficient Planar-Perovskite Solar Cell with Negligible Hysteresis
  • Advanced Energy Materials 2017,
61
  • [박태호교수 연구실]
  • Donor–Acceptor Type Dopant-Free, Polymeric Hole Transport Material for Planar Perovskite Solar Cells (19.8%)
  • Advanced Energy Materials 2017,
60
  • [박태호교수 연구실]
  • Green Solvent Processable, Dopant-Free Hole Transport Materials for Robust and Efficient Perovskite Solar Cells
  • Journal of The American Chemical Society 2017, 139 (35), pp 12175–12181
59
  • [차형준교수 연구실]
  • Control of nacre biomineralization by Pif80 in pearl oyster
  • Science Advances 3(8), e1700765
58
  • [박태호교수 연구실]
  • Gradated Mixed Hole Transport Layer in Perovskite Solar Cell: Improving Moisture Stability and Efficiency
  • ACS Applied Matererial and Interfaces 2017, 9 (33), 27720–27726