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검색어 : 통합검색[Fundamentals of organic chemistry]

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  • 61.
    Study on Electroactive Materials for Next Generation Energy Storage Systems
    최성호
    포항공과대학교 일반대학원, 국내박사, , 2024
  • 62
    Use of remote acyl groups for stereoselective 1,2-<i>cis</i>-glycosylation with fluorinated glucosazide thiodonors
    Hamala, Vojtě ch; Č ervenková Š ť astná , Lucie; Kurfiř t, Martin; Cuř í nová , Petra; Drač í nský , Martin; Karban, Jindř ich; Institute of Chemical Process Fundamentals of the CAS; Institute of Chemical Process Fundamentals of the CAS; Institute of Chemical Process Fundamentals of the CAS; Institute of Chemical Process Fundamentals of the CAS; Institute of Organic Chemistry and Biochemistry of the CAS; Institute of Chemical Process Fundamentals of the CAS; (Organic & biomolecular chemistry, v.18, 2020, pp.5427-5434)
  • 63
    Aqueous microwave chemistry: a clean and green synthetic tool for rapid drug discovery
    Polshettiwar, Vivek; Varma, Rajender S.; Sustainable Technology Division, National Risk Management Research Laboratory, U. S. Environmental Protection Agency; Sustainable Technology Division, National Risk Management Research Laboratory, U. S. Environmental Protection Agency; (Chemical Society reviews, v.37, 2008, pp.1546-1557)
  • 64
    Calix[4]arenes containing a ureido functionality on the lower rim as highly efficient receptors for anion recognition
    Klejch, Tomá š ; Slaví č ek, Jan; Hudeč ek, Oldř ich; Eigner, Vá clav; Gutierrez, Natalia Andrea; Cuř í nová , Petra; Lhotá k, Pavel; Department of Organic Chemistry, University of Chemistry and Technology Prague (UCTP), Technická 5; Department of Organic Chemistry, University of Chemistry and Technology Prague (UCTP), Technická 5; Department of Organic Chemistry, University of Chemistry and Technology Prague (UCTP), Technická 5; Department of Solid State Chemistry, UCTP, Technická 5; Institute of Chemical Process Fundamentals of the AS CR, v.v.i., Rozvojová 2/135; Institute of Chemical Process Fundamentals of the AS CR, v.v.i., Rozvojová 2/135; Department of Organic Chemistry, University of Chemistry and Technology Prague (UCTP), Technická 5; (New journal of chemistry = Nouveau journal de chimie, v.40, 2016, pp.7935-7942)
  • 65
    On the mechanism of colloidal silica action to improve flow properties of pharmaceutical excipients
    Tran, Diem Trang; Majerová , Diana; Veselý , Martin; Kulaviak, Luká š ; Ruzicka, Marek C.; Zá mostný , Petr; Department of Organic Technology, Faculty of Chemical Technology, University of Chemistry and Technology; Department of Organic Technology, Faculty of Chemical Technology, University of Chemistry and Technology; Department of Organic Technology, Faculty of Chemical Technology, University of Chemistry and Technology; Department of Multiphase Reactors, Institute of Chemical Process Fundamentals of the ASCR; Department of Multiphase Reactors, Institute of Chemical Process Fundamentals of the ASCR; Department of Organic Technology, Faculty of Chemical Technology, University of Chemistry and Technology; (International journal of pharmaceutics, v.556, 2019, pp.383-394)
  • 66
    Chiroplasmon-active optical fiber probe for environment chirality estimation
    Miliutina, Elena; Zadny, Jaroslav; Guselnikova, Olga; Storch, Jan; Walaska, Hana; Kushnarenko, Anna; Burtsev, Vasilii; Svorcik, Vaclav; Lyutakov, Oleksiy; Department of Solid State Engineering, University of Chemistry and Technology; Group of Advanced Materials and Organic Synthesis, Institute of Chemical Process Fundamentals, Czech Academy of Sciences; Department of Solid State Engineering, University of Chemistry and Technology; Group of Advanced Materials and Organic Synthesis, Institute of Chemical Process Fundamentals, Czech Academy of Sciences; Group of Advanced Materials and Organic Synthesis, Institute of Chemical Process Fundamentals, Czech Academy of Sciences; Department of Solid State Engineering, University of Chemistry and Technology; Department of Solid State Engineering, University of Chemistry and Technology; Department of Solid State Engineering, University of Chemistry and Techno; (Sensors and actuators. B, Chemical, v.343, 2021, pp.130122)
  • 67
    TsoiChem: A Mobile Application to Facilitate Student Learning in Organic Chemistry
    Tsoi, Mai Yin; Dekhane, Sonal; ; (Advanced Learning Technologies (ICALT), 2011 11th IEEE International Conference on, v.2011, 2011, pp.543-547)
  • 68
    Optically active polyimides with different thermal histories of their preparation
    Sysel, Petr; Hovorka, Š tě pá n; Kohout, Michal; Holakovský , Roman; Ž á dný , Jaroslav; Č í ž ek, Jan; Izá k, Pavel; Department of Polymers and Technology, University of Chemistry and Technology Prague, Prague 6, Czech Republic; Department of Physical Chemistry and Technology, University of Chemistry and Technology Prague, Prague 6, Czech Republic; Department of Organic Chemistry, University of Chemistry and Technology, Prague 6, Czech Republic; Department of Organic Chemistry, University of Chemistry and Technology, Prague 6, Czech Republic; Institute of Chemical Process Fundamentals of the CAS, Prague 6, Czech Republic; Institute of Chemical Process Fundamentals of the CAS, Prague 6, Czech Republic; Institute of Chemical Process Fundamentals of the CAS, Prague 6, Czech Republic; (Chirality : the pharmacological, biological, and chemical consequences of molecular asymmetry, v.34, 2022, pp.1151-1161)
  • 69
    Internal dynamics in helical molecules studied by X-ray diffraction, NMR spectroscopy and DFT calculations
    Drač í nský , Martin; Storch, Jan; Cí rkva, Vladimí r; Cí sař ová , Ivana; Sý kora, Jan; Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences; Institute of Chemical Process Fundamentals, Czech Academy of Sciences; Institute of Chemical Process Fundamentals, Czech Academy of Sciences; Faculty of Science, Charles University in Prague; Institute of Chemical Process Fundamentals, Czech Academy of Sciences; (Physical chemistry chemical physics : PCCP, v.19, 2017, pp.2900-2907)
  • 70
    Method for determination of optical purity of 2&#x2010;arylpropanoic acids using urea derivatives based on a 1,1′&#x2010;binaphthalene skeleton as chiral NMR solvating agents: Advantages and limitations thereof
    Cuř í nová , Petra; Há jek, Peter; Janků , Kristý na; Holakovský , Roman; Institute of Chemical Process Fundamentals, Czech Academy of Sciences, Prague, Czech Republic; Department of Organic Chemistry, University of Chemistry and Technology, Prague, Czech Republic; Department of Organic Chemistry, University of Chemistry and Technology, Prague, Czech Republic; Department of Organic Chemistry, University of Chemistry and Technology, Prague, Czech Republic; (Chirality : the pharmacological, biological, and chemical consequences of molecular asymmetry, v.31, 2019, pp.410-417)

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