Диссертация (1150075), страница 15
Текст из файла (страница 15)
Djurovich, A.B. Tamayo et al. // J. Amer. Chem. Soc. –2009. Vol. 131. № 28. P. 9813-9822.80. Barigelletti, F. Temperature dependence of the luminescence of cyclometalatedpalladium(II), rhodium(III), platinum(II), and platinum(IV) complexes / F.Barigelletti, D. Sandrini, M. Maestri et al. // Inorg. Chem. – 1988. Vol. 27., № 20.
– Р3644–3647.9581. Kozhevnikov, D.N. Phosphorescence vs fluorescence in cyclometalated Pt(II) andIr(III) complexes of (oligo)thienylpyridines / D.N. Kozhevnikov, V.N. Kozhevnikov,M.Z. Shafikov et al. // Inorg. Chem. – 2011. – Vol. 50., № 8. P. 3804-3815.82. Черезова, Е.А. Получение и свойства циклопалладированных комплексовдибензо[a:c]феназина и дибензо[f:h]хиноксалина с этилендиамином / Е.А.Черезова, Т.В. Тараскина, М.В. Куликова et al. // ЖОХ – 2003. – Т. 73., № 7. – С.1229-1230.83. Escudero, D. Exploring the triplet excited state potential energy surfaces of acyclometalated Pt(II) complex: Is there non-Kasha emissive behavior? / D. Escudero,W.
Thiel // Inorg. Chem. – 2014. – Vol. 53., № 20. – P. 11015-11019.84. Dı´ez, A. Synthesis and luminescence of cyclometalated compounds with nitrile andisocyanide ligands / A. Dı´ez, J. Fornie´s, S. Fuertes et al. // Organometallics – 2009. Vol. 28., № 6. – P. 1705-1718.85. Kim, H.N. Fluorescent and colorimetric sensors for detection of lead, cadmium, andmercury ions / H.N. Kim, W.X. Ren, J.S. Kim et al. // Chem. Soc. Rev. – 2012. –Vol.41., № 8.
– P.3210-3244.86. Iyengar, V. Trace elements in human clinical specimens: evaluation of literature datato identify reference values / V. Iyengar, J. Wolttlez // Clin. Chem. – 1988. –Vol.34., № 3. – P.474-481.87. Townsend, A.T. The determination of copper, zinc, cadmium and lead in urine by highresolution ICP-MS / Townsend A.T., Miller K.A., McLean S., Aldous S. // J. Anal.At. Spectrum. – 1998. – Vol.13., № 11. – P.1213-1219.88. Bobaka, J.
Potentiometric ion sensors / J. Bobaka, A. Ivaska, A. Lewenstam // Chem.Rev. – 2008. – Vol.108., № 2. – P.329-351.89. Zhao, Q. Phosphorescent chemosensors based on heavy-metal complexes / Q. Zhao, F.Li, C. Huang // Chem. Soc. Rev. – 2010. – Vol. 39., № 8. – P.3007-3030.90. Liu, Y. Phosphorescent iridium(III) complex with an N∧O Ligand as a Hg(II)-selectivechemodosimeter and logic gate / Y.
Liu, M. Li, Q. Zhao et. al. // Inorg. Chem. – 2011.– Vol.50., № 13. – P.5969-5977.91. Pearson, R.J. Hard and soft acids and bases / R.J. Pearson // J. Amer. Chem. Soc. 1963. – Vol. 85., № 22. – P. 3533–3539.9692. Wu, Y. Ratiometric phosphorescence imaging of Hg(II) in living cells based on aneutral iridium(III) complex / Y. Wu, H. Jing, Z. Dong et al. // Inorg. Chem. – 2011.
–Vol 50., № 16. – P. 7412–7420.93. Zhao, Q. A highly selective and multisignaling optical-electrochemical sensor forHg(II) based on phosphorescent iridium(III) complex / Q. Zhao, T. Cao, F. Li et. al. //Organometallics – 2007. – Vol. 26., № 8. - P. 2077-2081.94. Zhao, Q. Multisignaling detection of Hg(II) based on a phosphorescentiridium(III)complex / Q. Zhao, S. Liu, F. Li et al.
// Dalton Trans. – 2008. – № 29. – P. 3836–3840.95. Shi, H.-F. Simple conjugated polimers with on-chain phosphorescent iridium(III)complexes: toward ratiometric chemodosimeters for detecting trace amounts ofmercury(II) / H.-F. Shi, S.-J.
Liu, H.-B. Sun et al. // Chem. Eur. J. – 2010. – Vol. 16.,№ 40. – P. 12158-12167.96. Li, Y. Acid induced acetylacetonato replacement in biscyclometalated iridium(III)complexes / Y. Li, Y. Liu, M. Zhou // Dalton Trans. – 2012. – Vol. 41. № 13. – P.3807-3816.97. Zeng, H. A highly selective sulfur-free iridium(III)-complex-based phosphorescentchemidosimeter for detection of mercury(II) ion / H. Zeng, F. Yu1, J. Dai1 et al. //Dalton Trans.
– 2012. – Vol. 41., № 16. – P. 4878-4873.98. Lu, F. A highly selective and sensitive ratiometric chemodosimeter for Hg2+ ionsbased on an iridium(III) complex via thioacetal deprotection reaction / F. Lu, M.Yamamura, T. Nabeshima // Dalton Trans. – 2013. – Vol. 42, № 34. – P. 1209312100.99. Chen, K. Iridium-based lab-on-a-molecule for Hg2+ and ClO– with two distinct lightup emissions / K. Chen, J.W.
Bats, M. Schmittel // Inorg. Chem.- 2013. – Vol. 52., №22. – Р. 12863–12865.100. Yang, H. A selective phosphorescent chemodosimeter for mercury ion / H. Yang, J.Qian, L. Li et al. // Inorg. Chim. Acta – 2010. Vol. 363., № 8. – P. 1755–1759.101. Mei, Q.-B. Phosphorescent chemosensor for Hg2+ and acetonitrile based oniridium(III) complex / Q.-B. Mei, Y.-H.
Guo, B.-H. Tong et al. // Analyst – 2012. –Vol. 137., № 22. – P. 5398-5402.97102. Tong, B. Highly sensitive colorimetric phosphorescent chemodosimeter for Hg2+ basediridium(III) complex with (Ph2PS)2N auxiliary ligand / Y. Zhang, Z. Han, D. Chen etal. // Inorg. Chem. Commun. – 2013. – Vol. 28. – P. 31-36.103. Li, Y. Phosphorescent azacrown ether-appending iridium(III) complex for selectivedetection of Hg2+ in aqueous acetonitrile / Y. Li, U.C.
Yoon, M.H. Hyun // Bull.Korean Chem. Soc. – 2011. – Vol. 32., № 1. – Р. 122-126.104. Ann, J.H. 3,9-Ditha-6-azaundecane-appended iridium(III) complex for the selectivedetection of Hg2+ in aqueous acetonitrile / J.H. Ann, Y. Li, M.H. Hyun. // // Bull.Korean Chem. Soc. – 2012. – Vol. 33., № 10. – Р. 3465-3468.105.
Falvello, L. R. Reactivity of [M(C^P)(S2C-R)] (M ) Pd, Pt; C^P ) CH2-C6H4-P(otolyl)2-KC,P; R )Nme2, Oet) toward HgX2 (X ) Br, I). X-ray crystal structures of[Pt{CH2-C6H4P(o-tolyl)2-KC,P}(S2CNMe2)HgI(í-I)]2and[PdBr(S2COEt){í-P(o-tolyl)2-C6H4-CH2-}HgBr].0.5HgBr2.C2H4Cl2 / L.R. Falvello, J. Fornie´s, A. Martı´n etal. // Inorg. Chem. – 1997. – Vol. 36., № 27. – Р. 6166-6171.106. Chan, D.S.-H. A selective oligonucleotide-based luminescent switch-on probe for thedetection of nanomolar mercury(II) ion in aqueous solution / D.S.-H.
Chan, H.-M.Lee, .,-M. Che et al. // Chem. Commun. – 2009. –№ 48. – P. 7479–748.107. Vicente, J. Bis(2,6-dinitroaryl)platinum Complexes. 2. Di- and Trinuclear ComplexesContaining Pt-Hg Bonds / J. Vicente, A. Arcas, M.D. Ga´lvez-Lo´pez //Organometallics – 2004. – Vol. 23.,№ 14. – P. 3528-3537.108. Sicilia, V. Selective turn-off phosphorescent and colorimetric detection of mercury(II)in water by half-lantern platinum(II) complexes // V. Sicilia, P.
Borja, M, Baya et al. //Dalton Trans. – 2015. – Vol. 44., № 15. – P. 6936-6943.109. Harris R.K., "NMR Nomenclature. Nuclear Spin Properties and Conventions forChemical Shifts (IUPAC Recommendations 2001)"// Harris R.K., Becker E.D., Cabralde Menezes S.M., Goodfellow R., and Granger P. // Pure and Applied Chemistry –2001. Vol. 73, – P. 1795-1818110. Spek, A.L. Structure validation in chemical crystallography // Acta Crystallogr. (D) –2009.
– Vol. 65, № 2. – Р. 148-155.111. Sheldrick, G.M. A Short history of SHELX // Acta Crystallogr. (A) – 2008. – Vol. 64,№ 1 – Р. 112-122.98112. Dolomanov, O.V. OLEX2: a complete structure solution, refinement and analysisprogram / O.V. Dolomanov, L.J Bourhis., R.J Gildea et al. // J.
Appl. Crystallogr. –2009. Vol. 42, № 2. – Р. 339-341.113. Yan, L. Synthesis, structures and properties of three copper complexes created via insitu ligand cross-coupling reactions / L. Yan, W. Ma, C. Wang et al. // Trans.Met.Chem. – 2014. – Vol. 39, № 8. – P. 859-866.114. Michelin, R.A. Chemistry and biological activity of platinum amidine complexes /R.A. Michelin, P. Sgarbossa, S.M. Sbovata et al. // Chem.
Med. Chem. – 2011. – Vol.6, № 7. – P. 1172-1183.115. Bokach, N.A. Nitrile−smidine coupling at Pt(IV) and Pt(II) centers. An easy entry toimidoylamidine complexes / N.A. Bokach, T.V. Kuznetsova, S.A. Simanova et al. //Inorg. Chem. – 2005. – Vol. 44, № 14. – Р. 5152-5160.116. Bokach, N.A. Diplatinum(III) [Pt2IIICl2(μ2-amidinate)4] compound derived from airoxidation of mononuclear cis-[PtII(NH3)2(amidine-κ1)2]2+ complex / N.A. Bokach,M.R. Tyan, G.G. Aleksandrov et al.
// Inorg. Chem. Commun. – 2009. – Vol. 12, №10. Р. 1061-1063.117. S. Bettington, The synthesis and photophysical studies of cyclometalated iridium(III)complexes: PhD Thesis / Sylvia Bettington - Durham University, UK, 2003. – 243p.118. Altinolcek N. Synthesis, thermal and optical properties of a novel bis(2-(4dicyanovinylphenyl)pyridinato-N,C2)iridium(acetylacetonate) / N. Altınölçek, M.Tavasli, M. Aydemir et al. // Inorg. Chim.
Acta – 2016. – Vol. 440. - P. 102–106.119. Hein D.W. The use of polyphosphoric acid in the synthesis of 2-aryl- and 2-alkylsubstituted benzimidazoles, benzoxazoles and benzothiazoles / D.W. Hein, R.J.Alhein, J.J. Leavitt // J. Amer. Chem. Soc. – 1957. – Vol. 79. № 2. – P. 427-429.120. Bondi A. Van der Waals volumes and radii. // J. Phys. Chem. - 1964. V.
68. № 3. - P.441-451.121. Glass R.S. Crystal and molecular structure of 1,4,7-trithiacyclononane. / R.S. Glass,G.S. Wilson, W.N. Setzer // J. Am. Chem. Soc. – 1980. V. 102. № 15. - P. 5068-5069.122. Черняев, И.И. Синтез комплексных соединений металлов платиновой группы.Справочник / И.И. Черняев.
– Москва: Наука, 1964. – 339с.123. Кукушкин, Ю.Н. Закономерность трансвлияния И.И. Черняева / Ю.Н.Кукушкин, Р.И. Бобоходжаев – М.:Наука, 1977 – 183с.99124. Экспериментальные методы химии высоких энергий: Учебное пособие / Подобщей ред. М.Я. Мельникова. – М.: Изд-во МГУ, 2009. – 824с.125. Li, J. Synthetic Control of Excited-State Properties in Cyclometalated Ir(III)Complexes Using Ancillary Ligands.