Izomeria wiązaniowa (Polish Wikipedia)

Analysis of information sources in references of the Wikipedia article "Izomeria wiązaniowa" in Polish language version.

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  • S.M. Jörgensen, Zur Konstitution der Kobalt-, Chrom- und Rhodiumbasen. V, „Zeitschrift für anorganische Chemie”, 5 (1), 1894, s. 147–196, DOI10.1002/zaac.18940050119 (niem.).
  • Krystyna A. Deresz i inni, An optically reversible room-temperature solid-state cobalt(III) photoswitch based on nitro-to-nitrito linkage isomerism, „Chemical Communications”, 58 (97), 2022, s. 13439–13442, DOI10.1039/D2CC05134F (ang.).
  • Jacqueline M. Cole, Single-crystal X-ray diffraction studies of photo-induced molecular species, „Chemical Society Reviews”, 33 (8), 2004, s. 501–513, DOI10.1039/B205339J (ang.).
  • Tanmay Chattopadhyay i inni, Linkage isomerism in 4-(2-aminoethyl)morpholine (L) complexes of nickel (II) nitrite: X-ray single crystal structure of trans-[NiL2(NO2)2], „Polyhedron”, 24 (13), 2005, s. 1677–1681, DOI10.1016/j.poly.2005.04.039 (ang.).
  • Andrey Yu. Kovalevsky, Kimberly A. Bagley, Philip Coppens, The First Photocrystallographic Evidence for Light-Induced Metastable Linkage Isomers of Ruthenium Sulfur Dioxide Complexes, „Journal of the American Chemical Society”, 124 (31), 2002, s. 9241–9248, DOI10.1021/ja026045c (ang.).
  • Sijbe Balt, Henricus J.A.M. Kuipers, Willem E. Renkema, Nitrito–nitro linkage isomerisation of the penta-amminecobalt(III) complex in liquid ammonia, „Journal of the Chemical Society, Dalton Transactions” (8), 1983, s. 1739–1741, DOI10.1039/DT9830001739 (ang.).
  • Katharine F. Bowes i inni, Photocrystallographic structure determination of a new geometric isomer of [Ru(NH3)4(H2O)(η1-OSO)][MeC6H4SO3]2, „Chemical Communications” (23), 2006, s. 2448–2450, DOI10.1039/B604039J (ang.).
  • S. Ajao Adeyemi, Frank J. Miller, Thomas J. Meyer, Synthetic aspects of the reaction between azide ion and Ru(bipy)2(NO)X2+ (X = Cl, NO2). Substitution-induced nitro-nitrito isomerism, „Inorganic Chemistry”, 11 (5), 1972, s. 994–999, DOI10.1021/ic50111a016 (ang.).
  • W. Gregory Jackson i inni, Base-catalyzed nitrito to nitro linkage isomerization of cobalt(III), rhodium(III), and iridium(III) pentaammine complexes, „Inorganic Chemistry”, 19 (4), 1980, s. 904–910, DOI10.1021/ic50206a022 (ang.).
  • M. Onyszchuk, I. Wharf, Solvent-induced linkage isomerism and ionization in solutions of triphenyllead selenocyanate, „Journal of Organometallic Chemistry”, 249 (1), 1983, s. c9–c12, DOI10.1016/S0022-328X(00)98821-1 (ang.).
  • Sylwia E. Kutniewska i inni, Photo- and Thermoswitchable Half-Sandwich Nickel(II) Complex: [Ni(η5-C5H5)(IMes)(η1-NO2)], „Inorganic Chemistry”, 58 (24), 2019, s. 16712–16721, DOI10.1021/acs.inorgchem.9b02836 (ang.).
  • E.V. Boldyreva, Crystal-Structure Aspects of Solid-State Inner-Sphere Isomerization in Nitro(nitrito)pentaamminecobalt(III) Complexes, „Russian Journal of Coordination Chemistry”, 27 (5), 2001, s. 297–323, DOI10.1023/A:1011392613014 (ang.).
  • Dominik Schaniel, Theo Woike, Necessary conditions for the photogeneration of nitrosyl linkage isomers, „Physical Chemistry Chemical Physics”, 11 (21), 2009, s. 4391–4395, DOI10.1039/B900546C (ang.).
  • A. Mikhailov i inni, Combining photoinduced linkage isomerism and nonlinear optical properties in ruthenium nitrosyl complexes, „Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials”, 75 (6), 2019, s. 1152–1163, DOI10.1107/S205252061901357X (ang.).
  • Lee-May Huang i inni, Photovoltaic electrochromic device for solar cell module and self-powered smart glass applications, „Solar Energy Materials and Solar Cells”, 99, 9th International Meeting on Electrochromism, 2012, s. 154–159, DOI10.1016/j.solmat.2011.03.036 (ang.).
  • Jacqueline M. Cole, Applications of photocrystallography: a future perspective, „Zeitschrift für Kristallographie – Crystalline Materials”, 223 (4–5), 2008, s. 363–369, DOI10.1524/zkri.2008.0036 (ang.).

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