Eter dimetylowy (Polish Wikipedia)

Analysis of information sources in references of the Wikipedia article "Eter dimetylowy" in Polish language version.

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  • Henri A. Favre, Warren H. Powell, Nomenclature of Organic Chemistry. IUPAC Recommendations and Preferred Names 2013, wyd. 1, Royal Society of Chemistry, International Union of Pure and Applied Chemistry, 2014, s. 703, DOI10.1039/9781849733069, ISBN 978-0-85404-182-4 (ang.).
  • K. Lasch i inni, Mixed conducting catalyst support materials for the direct methanol fuel cell, „Journal of Power Sources”, 105 (2), 2002, s. 305–310, DOI10.1016/S0378-7753(01)00956-9 [dostęp 2022-10-24] (ang.).
  • Pawel J. Kulesza i inni, Electrocatalytic oxidation of small organic molecules in acid medium: Enhancement of activity of noble metal nanoparticles and their alloys by supporting or modifying them with metal oxides, „Electrochimica Acta”, 110, 2013, s. 474–483, DOI10.1016/j.electacta.2013.06.052, PMID24443590, PMCIDPMC3891784 [dostęp 2022-10-24] (ang.).
  • Luhua Jiang i inni, Structure and chemical composition of supported Pt–Sn electrocatalysts for ethanol oxidation, „Electrochimica Acta”, 50 (27), 2005, s. 5384–5389, DOI10.1016/j.electacta.2005.03.018 [dostęp 2022-10-24] (ang.).
  • Jeffrey A. Herron, Peter Ferrin, Manos Mavrikakis, First-Principles Mechanistic Analysis of Dimethyl Ether Electro-Oxidation on Monometallic Single-Crystal Surfaces, „The Journal of Physical Chemistry C”, 118 (42), 2014, s. 24199–24211, DOI10.1021/jp505919x [dostęp 2022-10-24] (ang.).}
  • Iwona A. Rutkowska, Beata Rytelewska, Pawel J. Kulesza, Enhancement of oxidation of dimethyl ether through formation of hybrid electrocatalysts composed of Vulcan-supported PtSn decorated with Ru-black or PtRu nanoparticles, „Electrochimica Acta”, 400, 2021, s. 139437, DOI10.1016/j.electacta.2021.139437 [dostęp 2022-10-24] (ang.).
  • V.A. Grinberg i inni, Nanostructured catalysts for direct electrooxidation of dimethyl ether based on Bi- and trimetallic Pt–Ru and Pt–Ru–Pd alloys prepared from coordination compounds, „Russian Journal of Coordination Chemistry”, 43 (4), 2017, s. 206–212, DOI10.1134/S1070328417040017 [dostęp 2022-10-24] (ang.).
  • Ilya V. Yudanov i inni, How the C–O Bond Breaks during Methanol Decomposition on Nanocrystallites of Palladium Catalysts, „Journal of the American Chemical Society”, 130 (29), 2008, s. 9342–9352, DOI10.1021/ja078322r [dostęp 2022-10-24] (ang.).
  • Yi Zhang i inni, Electrochemical and infrared study of electro-oxidation of dimethyl ether (DME) on platinum polycrystalline electrode in acid solutions, „Electrochimica Acta”, 53 (21), 2008, s. 6093–6103, DOI10.1016/j.electacta.2008.01.109 [dostęp 2022-10-24] (ang.).
  • Iwona A. Rutkowska i inni, Enhancement of oxidation of dimethyl ether through application of zirconia matrix for immobilization of noble metal catalytic nanoparticles, „Journal of Solid State Electrochemistry”, 24 (11–12), 2020, s. 3173–3183, DOI10.1007/s10008-020-04790-0 [dostęp 2022-10-24] (ang.).

europa.eu

echa.europa.eu

nih.gov

pubchem.ncbi.nlm.nih.gov

ncbi.nlm.nih.gov

  • Pawel J. Kulesza i inni, Electrocatalytic oxidation of small organic molecules in acid medium: Enhancement of activity of noble metal nanoparticles and their alloys by supporting or modifying them with metal oxides, „Electrochimica Acta”, 110, 2013, s. 474–483, DOI10.1016/j.electacta.2013.06.052, PMID24443590, PMCIDPMC3891784 [dostęp 2022-10-24] (ang.).

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