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Biomass-mediated ZSM-5 zeolite synthesis: When self-assembly allows to cross the Si/Al lower limit

  • Pereira, Marcelo Maciel ; 
  • Gomes, Elisa Silva ; 
  • Silva, Alessandra Vieira ; 
  • Pinar, Ana Belen ; 
  • Willinger, Marc-Georg. ; 
  • Shanmugam, Sangaraju ; 
  • Chizallet, Celine ; 
  • Laugel, Guillaume ; 
  • Losch, Pit ; 
  • Louis, Benoˆıt
  • 2018-08
  • Pereira, Marcelo Maciel. (2018-08). Biomass-mediated ZSM-5 zeolite synthesis: When self-assembly allows to cross the Si/Al lower limit. Chemical Science, 9(31), 6532–6539. doi: 10.1039/c8sc01675e
  • Royal Society of Chemistry
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  • Heo, Su Jin ; 
  • Kim, Seunguk ; 
  • Pyo, Goeun ; 
  • Yang, Jae Hoon ; 
  • Shin, Jeong Hee ; 
  • Kwon, Hyuk-Jun ; 
  • Kang, Hongki ; 
  • Lee, Gae Hwang ; 
  • Jang, Jae Eun
  • 2020-08
  • Heo, Su Jin. (2020-08). Color Thin-Film Transistors Employing Periodic Nanohole Structures. doi: 10.1021/acsaelm.0c00418
  • American Chemical Society
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Enhanced Rate Capability and Cycle Performance of Titanium-Substituted P2-Type Na0.67Fe0.5Mn0.5O2 as a Cathode for Sodium-Ion Batteries

  • Park, Joon-Ki ; 
  • Park, Geun-Gyung ; 
  • Kwak, Hunho ; 
  • Hong, Seung-Tae ; 
  • Lee, Jae-Won
  • 2018-01
  • Park, Joon-Ki. (2018-01). Enhanced Rate Capability and Cycle Performance of Titanium-Substituted P2-Type Na0.67Fe0.5Mn0.5O2 as a Cathode for Sodium-Ion Batteries. doi: 10.1021/acsomega.7b01481
  • American Chemical Society
  • View : 1387
  • Download : 733
  • Wang, Yi ; 
  • Zajac, Amanda L. ; 
  • Lei, Weiwei ; 
  • Christensen, Carol M. ; 
  • Margolskee, Robert F. ; 
  • Bouysset, Cedric ; 
  • Golebiowski, Jerome ; 
  • Zhao, Huabin ; 
  • Fiorucci, Sebastien ; 
  • Jiang, Peihua
  • 2019-06
  • Wang, Yi. (2019-06). Metal Ions Activate the Human Taste Receptor TAS2R7. Chemical Senses, 44(5), 339–347. doi: 10.1093/chemse/bjz024
  • Oxford University Press
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  • Jeong, Je-Un ; 
  • Heo, Yoon-Gi ; 
  • Cho, Jung Ah ; 
  • Roh, Yoo Jin ; 
  • Kim, Sung Jae ; 
  • Lee, Chang-Hun ; 
  • Lee, Jeong-Won
  • 2022-11
  • Jeong, Je-Un. (2022-11). Nanostructure-based wettability modification of TiAl6V4 alloy surface for modulating biofilm production: Superhydrophilic, superhydrophobic, and slippery surfaces. Journal of Alloys and Compounds, 923. doi: 10.1016/j.jallcom.2022.166492
  • Elsevier BV
  • View : 507
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