Academic literature on the topic '(H2O)(tap)2RuORu(tap)2(H2O)]2+'

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Journal articles on the topic "(H2O)(tap)2RuORu(tap)2(H2O)]2+"

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Subala, Mondal, Sarkar (Sain) Roshni, Ray Sumon, Chattopadhyay Animesh, Nandi Debabrata, and K. Ghosh Alak. "Interactions of thiourea and L-cysteine with [(H2O)(tap)2RuORu(tap)2(H2O)]2+ {tap = 2-(m-tolylazo)pyridine} in aqueous medium : Kinetic and mechanistic studies." Journal of Indian Chemical Society 93, Aug 2016 (2016): 937–44. https://doi.org/10.5281/zenodo.5594770.

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Department of Chemistry, The University of Burdwan, Burdwan-713 104, West Bengal, India <em>E-mail </em>: alakghosh2002@yahoo.co.in <em>Manuscript received online 09 March 2016, accepted 12 March 2016</em> The kinetics of the interactions of thiourea and L-cysteine with the title complex were studied spectrophoto&shy;metrically as a function of complex and ligand concentrations, pH and temperature at constant ionic strength. The substitution reactions show two consecutive steps : the first is the ligand-assisted anation followed by a chelation step. The activation parameters for both the steps
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Das(Karfa), Tandra, Biplab K. Bera, Subhasis Mallick, et al. "Kinetic and mechanistic studies on the reaction of thiosemicarbazide with [(H2O)(tap)2RuORu(tap)2(H2O)]2+ {tap = 2-(m-tolylazo)pyridine}." Transition Metal Chemistry 35, no. 7 (2010): 885–90. http://dx.doi.org/10.1007/s11243-010-9408-4.

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Mandal, Arup, Sumon Ray, Animesh Chattopadhyay, Parnajyoti Karmakar, Debabrata Nandi, and Alak K. Ghosh. "The Reactivity of vic-dioximes Towards the [(H2O)(tap)2RuORu(tap)2(H2O)]2+ Ion {tap = 2-(m-tolylazo)pyridine} at Physiological pH." Journal of Solution Chemistry 43, no. 5 (2014): 870–84. http://dx.doi.org/10.1007/s10953-014-0178-z.

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Chattopadhyay, Hriday, Alak K. Ghosh, and Barindra K. Ghosh. "Kinetics and mechanism of the interaction of azide with [(H2O)(tap)2RuORu(tap)2-(H2O)]2+ion at physiological pH." Transition Metal Chemistry 29, no. 1 (2004): 24–30. http://dx.doi.org/10.1023/b:tmch.0000014478.35518.8f.

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Ghosh, Alak Kumar. "Kinetics and mechanism of the interaction of thioglycolic acid with [(H2O)(tap)2RuORu(tap)2(H2O)]2+ ion at physiological pH." Transition Metal Chemistry 31, no. 7 (2006): 912–19. http://dx.doi.org/10.1007/s11243-006-0083-4.

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Mandal, Arup, Subhasis Mallick, Parnajyoti Karmakar, Biplab K. Bera, Subala Mondal, and Alak K. Ghosh. "Kinetics and Mechanism of the Interaction of Glycyl-L-Leucine with [(H2O)(Tap)2Ruoru(Tap)2(H2O)]2+ Ion at Physiological Ph." Progress in Reaction Kinetics and Mechanism 37, no. 1 (2012): 1–17. http://dx.doi.org/10.3184/146867811x13095334771654.

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Mandal, Arup, Subala Mondal, Parnajyoti Karmakar, Subhasis Mallick, Biplab K. Bera, and Alak K. Ghosh. "Mechanistic aspects of ligand substitution on [(H2O)(tap)2RuORu(tap)2(H2O)]2+ ion {tap = 2-(m-tolylazo)pyridine} by some amino acids in aqueous medium at physiological pH." International Journal of Chemical Kinetics 44, no. 9 (2012): 612–23. http://dx.doi.org/10.1002/kin.20701.

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Subala, Mondal, Nandi Debabrata, Mandal Arup, et al. "Kinetics and mechanism of the ligand substitution reaction of [(H2O)(tap)2RuORu(tap)2(H2O)]2+ {tap = 2-(m-tolylazo)pyridine} with diethyldithiocarbamate anion in aqueous solution at pH 7.4." Journal of Indian Chemical Society Vol. 90, Jul 2013 (2013): 903–11. https://doi.org/10.5281/zenodo.5773952.

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Department of Chemistry, The University of Burdwan, Burdwan-713 104, West Bengal, India <em>E-mail </em>: alakghosh2002@yahoo.co.in <em>Manuscript received online 02 August 2012, accepted 12 August 2012</em> Kinetic and mechanistic studies on the interaction of diethyldithiocarbamate anion [DDTC-] with the title complex at physiological pH and in aqueous medium have been done spectrophotometrically as a function of [(H<sub>2</sub>O)(tap)<sub>2</sub>RuORu(tap)<sub>2</sub>(H2O)<sup>2+</sup>], [DDTC-], pH and temperature at constant ionic strength. The interaction reaction followed two parallel p
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Alharthi, Salman S., and Hamed M. Al-Saidi. "Spectrophotometric Determination of Trace Concentrations of Copper in Waters Using the Chromogenic Reagent 4-Amino-3-Mercapto-6-[2-(2-Thienyl)Vinyl]-1,2,4-Triazin-5(4H)-One: Synthesis, Characterization, and Analytical Applications." Applied Sciences 10, no. 11 (2020): 3895. http://dx.doi.org/10.3390/app10113895.

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A simple, selective, and inexpensive spectrophotometric method is described in the present study for estimation of trace concentrations of Cu2+ in water based on its reaction with chromogenic reagent namely 4-amino-3-mercapto-6-[2-(2-thienyl)vinyl]-1,2,4-triazin-5(4H)-one (AMT). The reaction between copper(II) ions and AMT reagent gives [Cu(L)(NO3)(H2O)2]•H2O complex, where L represents AMT molecule with NH group. The formed complex exhibits a sharp, and well-defined peak at λmax = 434 nm with a molar absorptivity (ε) of 1.90 × 104 L mol−1 cm−1, and Sandell’s factor of 0.003 μg mL−2. Absorbanc
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Musgraves, J. David, B. G. Potter, and Timothy J. Boyle. "Nanostructure development in photodeposited, titania-based thin films." Journal of Materials Research 24, no. 11 (2009): 3372–79. http://dx.doi.org/10.1557/jmr.2009.0411.

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Ultraviolet irradiation (λ = 248 nm) was used to photocatalyze a solution of the heteroleptic titanium alkoxide (OPy)2Ti(TAP)2 [where OPy = pyridine carbinoxide and TAP = 2,4,6 tris(dimethylamino)phenoxide], leading to the deposition of a titania-based thin film only in the exposed region. The effect of water addition to the (OPy)2Ti(TAP)2 pyridine solution on the properties of the final photodeposited film structure was examined by using vibrational spectroscopy and electron microscopy. Under consistent optical exposure conditions, the amount of water added altered the nanoscale porosity of t
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Book chapters on the topic "(H2O)(tap)2RuORu(tap)2(H2O)]2+"

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"Kinetic and Mechanistic Studies on the Reaction of DL-Methionine with [(H2O)(tap)2RuORu(tap)2(H2O)]." In Inorganic Chemistry. Apple Academic Press, 2011. http://dx.doi.org/10.1201/b12873-18.

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"Kinetic and Mechanistic Studies on the Reaction of DL-Methionine with [(H2O)(tap)2RuORu(tap)2(H2O)]2+ in Aqueous Medium at Physiological pH." In Inorganic Chemistry. Apple Academic Press, 2011. http://dx.doi.org/10.1201/b12873-17.

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Kirillov, Sviatoslav A., Anna V. Potapenko, and Tetiana V. Lisnycha. "Delicate lithium-manganese spinel LiMn2O4 of quasi-spherical morphology, obtained by hydrolysis of complex compounds, as cathode material for high-power current sources." In NEW FUNCTIONAL SUBSTANCES AND MATERIALS FOR CHEMICAL ENGINEERING. PH “Akademperiodyka”, 2021. http://dx.doi.org/10.15407/akademperiodyka.444.108.

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Precipitation of hydroxides and carbonates from solutions containing complex compounds is a valuable industrial process enabling one to synthesize electrode materials with high density particles of microspherical morphology and high tap density. As a complex formation agent, ammonia is almost exclusively used in this process. Aiming at the search of other complex formation agents and the detailed studies of complex formation at precipitation, we have first investigated the hydrolysis of solutions containing citric acid. Equilibria in solutions containing citrate complexes of manganese and carb
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