https://oldena.lpnu.ua/handle/ntb/45189
Title: | Researches of amphiphilic properties of copolyesters with chromophore groups |
Other Titles: | Дослідження амфіфільних властивостей кополіестерів з хромофорними групами |
Authors: | Yakoviv, Mariia Fihurka, Nataliia Nosova, Nataliya Samaryk, Volodymyr Vasylyshyn, Taras Hermanovych, Svitlana Voronov, Stanislav Varvarenko, Sergiy |
Affiliation: | Lviv Polytechnic National University |
Bibliographic description (Ukraine): | Researches of amphiphilic properties of copolyesters with chromophore groups / Mariia Yakoviv, Nataliia Fihurka, Nataliya Nosova, Volodymyr Samaryk, Taras Vasylyshyn, Svitlana Hermanovych, Stanislav Voronov, Sergiy Varvarenko // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2018. — Vol 12. — No 3. — P. 318–325. |
Bibliographic description (International): | Researches of amphiphilic properties of copolyesters with chromophore groups / Mariia Yakoviv, Nataliia Fihurka, Nataliya Nosova, Volodymyr Samaryk, Taras Vasylyshyn, Svitlana Hermanovych, Stanislav Voronov, Sergiy Varvarenko // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2018. — Vol 12. — No 3. — P. 318–325. |
Is part of: | Chemistry & Chemical Technology, 3 (12), 2018 |
Journal/Collection: | Chemistry & Chemical Technology |
Issue: | 3 |
Volume: | 12 |
Issue Date: | 20-Jan-2018 |
Publisher: | Lviv Politechnic Publishing House |
Place of the edition/event: | Lviv |
Keywords: | коефіцієнт розподілу гідрофільно- ліпофільний баланс кополіестери флуоресцеїн системи доставки ліків distribution coefficient hydrophilic-lipophilic balance copolyester fluorescein drug delivery systems |
Number of pages: | 8 |
Page range: | 318-325 |
Start page: | 318 |
End page: | 325 |
Abstract: | Визначено коефіцієнти розподілу
макромолекул амінофункційних кополістерів з хро-
мофорними групами в системі н-октанол-вода та
експериментальні і розрахункові характеристики їх гідро-
фільно-ліпофільного балансу(HLB). Проведено множинний
регресійний аналіз та отримано інтерполяційне рівняння
коефіцієнту ліпофільності від параметрів, які харак-
теризують якісний та кількісний склад кополіестеру.
Виявлено чинники, які мають найбільш суттєвий вплив на
коефіцієнт ліпофільності та HLB одержаних флуо-
ресцеїнвміснихкополіестерів. The distribution coefficients of macromolecules of aminofunctional copolyesters with chromophore groups in the n-octanol–water system, as well as experimental and calculated characteristics of their hydrophilic-lipophilic balance (HLB) have been determined. A multiple regression analysis has been carried out and interpolation equation of the lipophilicity coefficient has been derived depending on the parameters characterizing the qualitative and quantitative composition of the copolyester. The factors which have the most significant influence on the lipophilicity factor and HLB of the obtained fluorescein-containing copolyester have been established. |
URI: | https://ena.lpnu.ua/handle/ntb/45189 |
Copyright owner: | © Національний університет „Львівська політехніка“, 2018 ©Yakoviv M., Fihurka N., Nosova N., Samaryk V., Vasylyshyn T.,Hermanovych S., Voronov S., Varvarenko S., 2018 |
URL for reference material: | https://doi.org/10.1039/c2cc35997a http://www.acdlabs.com/software/logp/logp_prediction_ https://doi.org/10.1021/ja01062a035 https://doi.org/10.23939/chcht10.04.423 |
References (Ukraine): | [1] Zheng H., Zhan X.-Q., BianQ.-N., ZhangX.-J.: Chem. Commun., 2013, 49, 429. https://doi.org/10.1039/c2cc35997a [2] http://www.acdlabs.com/software/logp/logp_prediction_ software.php [3] Kazicina L., Kupletskaja N.: Primenenie UF-, IK-, JaMR- Spektroskopii v Organicheskoi Khimii. Vysshaja shkola, Moskva 1971. [4] Varvarenko S., Samaryk V., Vlizlo V. et al.: Polimernyi Zh.,2015, 37, 193. [5] Oleksa V., Nagorniak M., Chekh B. et al.: Polymer Complexes of Microelements Based on N-derivativesof L-glutamic Acid for Correction of Metabolism [in:] Krynski A., Tebug G., Voloshanska S. (Eds.), Ecology and Human Health. Czestochowa Int. Publ., Czestochowa 2018, 7-19. [6] Hansch C., Fujita T.: J. Am. Chem. Soc., 1964, 86, 1616.https://doi.org/10.1021/ja01062a035 [7] Davies J.: A Quantitative Kinetic Theory of Emulsion Type. 1. Physical Chemistry of the Emulsifying Agent [in:] Gas/Liquid and Liquid/Liquid Interfaces, Proceed. of 2nd Int. Congr. Surface Activity. Butterworths, London 1957, 426. [8] Varvarenko S., Tarnavchyk I., Voronov A. et al.: Chem. Chem. Technol., 2013, 7, 164. [9] NagornyakM., Fihurka N., Samaryk V. et al.: Chem. Chem. Technol., 2016, 10, 423. https://doi.org/10.23939/chcht10.04.423 |
References (International): | [1] Zheng H., Zhan X.-Q., BianQ.-N., ZhangX.-J., Chem. Commun., 2013, 49, 429. https://doi.org/10.1039/P.2cc35997a [2] http://www.acdlabs.com/software/logp/logp_prediction_ software.php [3] Kazicina L., Kupletskaja N., Primenenie UF-, IK-, JaMR- Spektroskopii v Organicheskoi Khimii. Vysshaja shkola, Moskva 1971. [4] Varvarenko S., Samaryk V., Vlizlo V. et al., Polimernyi Zh.,2015, 37, 193. [5] Oleksa V., Nagorniak M., Chekh B. et al., Polymer Complexes of Microelements Based on N-derivativesof L-glutamic Acid for Correction of Metabolism [in:] Krynski A., Tebug G., Voloshanska S. (Eds.), Ecology and Human Health. Czestochowa Int. Publ., Czestochowa 2018, 7-19. [6] Hansch C., Fujita T., J. Am. Chem. Soc., 1964, 86, 1616.https://doi.org/10.1021/ja01062a035 [7] Davies J., A Quantitative Kinetic Theory of Emulsion Type. 1. Physical Chemistry of the Emulsifying Agent [in:] Gas/Liquid and Liquid/Liquid Interfaces, Proceed. of 2nd Int. Congr. Surface Activity. Butterworths, London 1957, 426. [8] Varvarenko S., Tarnavchyk I., Voronov A. et al., Chem. Chem. Technol., 2013, 7, 164. [9] NagornyakM., Fihurka N., Samaryk V. et al., Chem. Chem. Technol., 2016, 10, 423. https://doi.org/10.23939/chcht10.04.423 |
Content type: | Article |
Appears in Collections: | Chemistry & Chemical Technology. – 2018. – Vol. 12, No. 3 |
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2018v12n3_Yakoviv_M-Researches_of_amphiphilic_318-325__COVER.png | 524.84 kB | image/png | View/Open |
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