Standard thermochemical characteristics of formation of triphenylantimony bis(acetophenoneoximate)
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Publisher
Springer Science and Business Media LLC
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http://link.springer.com/content/pdf/10.1007/s10973-012-2479-z.pdf
Reference17 articles.
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2. Smirnova NN, Letyanina IA, Markin AV, Larina VN, Sharutin VV, Molokova OV. Thermodynamic properties of tetraphenylantimony benzophenoximate in the region of 0–450 K. Rus J Gen Chem. 2009;79:717–23.
3. Letyanina IA, Smirnova NN, Markin AV, Ruchenin VA, Larina VN, Sharutin VV, Molokova OV. Thermodynamics of tetraphenylantimony acetophenoneoximate. J Therm Anal Calorim. 2011;103:355–63.
4. Letyanina IA, Markin AV, Smirova NN, Gushchin AV, Shashkin DV. Thermodynamic characteristics of triphenylantimony diacrylate. Rus J Phys Chem. 2012;86:1189–95.
5. Markin AV, Letyanina IA, Ruchenin VA, Smirnova NN, Gushchin AV, Shashkin DV. Heat capacity and standard thermodynamic functions of triphenylantimony dimethacrylate over the temperature range from (0 to 400) K. J Chem Eng Data. 2011;56:3657–62.
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1. Thermochemical Properties of Ph4Sb(OC(O)C10H15) and Ph3Sb(OC(O)C10H15)2;Russian Journal of Physical Chemistry A;2018-09
2. Calorimetric Study of Triphenylbismuth Dimethacrylate Ph3Bi(O2CCMe═CH2)2;Journal of Chemical & Engineering Data;2016-07-05
3. Calorimetric study of organic compounds of antimony and bismuth Ph3Sb(O2CCH=CHCH3)2 and Ph3Bi(O2CCH=CHCH3)2;Journal of Thermal Analysis and Calorimetry;2016-03-28
4. Heat Capacity and Standard Thermodynamic Functions of Triphenylantimony Bis(1-adamantanecarboxylate) over the Range from (0 to 520) K;Journal of Chemical & Engineering Data;2013-10-02
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