Cite

1. Igal, K., Romina, A. & Jorge, E. (2019). Antifungal activity of cotton fabrics finished modified silica-silver-carbon based hybrid nanoparticles. Textile Res. J. 5(89), 825–833. DOI: 10.1177/0040517518755792.Open DOISearch in Google Scholar

2. Szmuc, K., Kus-Liskiewicz, M., Szyller, Ł., Szmuc, D., Stompor, M., Zawlik, I., Ruman, T., Wołowiec, S., & Cebulski, J. (2019). Silver nanoparticles deposited on calcium hydrogen-phosphate –silver phosphate matrix; biological activity of the composite. Pol. J. Chem. Technol. 21(2), 6–13. DOI: 10.2478/pjct-2019-0013.Open DOISearch in Google Scholar

3. Burkat, G.K. (2009). Jelektroosazhdenie dragocennyh metallov [in Russian: Electrodeposition of precious metals]. Saint-Petersburg, Russia: Politechnika.Search in Google Scholar

4. Lansdown, A. (2002). Silver. Its antibacterial properties and mechanism of action. J. Wound Care, 11(4), 125–130. DOI: 10.12968/jowc.2002.11.4.26389.11998592Open DOISearch in Google Scholar

5. Samsonov, N. & Dudkin, N. (2014, June). Zolotaja traektorija – 2 [in Russian: The Golden path - 2]. Expert Sibir. 22, 10–17. Retrieved February 04, 2020, from World Wide Web: http://lib.ieie.nsc.ru/docs/2014/Samsonov_Dudkin_Gold-ExSib2014-22.pdf.Search in Google Scholar

6. Stogni, A. & Novitskyi, N. (2003, November). Poluchenie metodom ionno-luchevogo raspylenija kislorodom i opticheskie svojstva ul’tra tonkih plenok zolota [in Russian: Getting by using ion-beam sputtering with oxygen and optical properties of ultra thin films of gold]. J. Tech. Phys. 6(73), 86–89. Retrieved April 15, 2020, from Elibrary database on the World Wide Web: http://elibrary.lt/resursai/Uzsienio%20leidiniai/ioffe/ztf/2003/06/ztf_t73v06_15.pdf.Search in Google Scholar

7. Tuleushev, A. (2003). Russian Federation Patent No. 2214476. Moscow, Russian Federation: Federal Service for Intellectual Property.Search in Google Scholar

8. Kuchianov, A. (2013). Russian Federation Patent No. 2489230. Moscow, Russian Federation: Federal Service for Intellectual Property.Search in Google Scholar

9. Shkundina, S. (2009, December). Novye processy i materialy v proizvodstve pechatnyh plat [in Russian: New processes and materials in printed circuit boards manufacturing]. Technologies in the electronics industry. 4, 16–20. Retrieved December 21, 2019, from World Wide Web: http://www.tech-e.ru/pdf/2009_04_16.pdf.Search in Google Scholar

10. Satayev, M., Koshkarbaeva Sh. & Tasboltaeva A. (2013, December). Metallization of the roducts of textile industry. Proceed. Higher Educ. Instit. Textile Ind. Technol. 2(348), 102–104. Retrieved December 21, 2019, from World Wide Web: https://ttp.ivgpu.com/wp-content/uploads/2015/10/348.pdf.Search in Google Scholar

11. Medvedev, A. & Nabatov, U. (2010). Immersionnoe zolochenie pod pajku [in Russian: Immersion gold plating for soldering]. Technol. Electr. Ind. 2, 74–77. Retrieved December 21, 2019, from World Wide Web: https://www.tech-e.ru/2010_2_6.phpSearch in Google Scholar

12. Isaeva, A., Boitsova, T. & Gorbunova, V. (2007). Photochemical synthesis of gold nanoparticles in aqueous dispersions of carboxylated polystyrene. Russ. J. Gen. Chem. 5(77), 812–817. DOI: 10.1134/S1070363207050027.Open DOISearch in Google Scholar

eISSN:
1899-4741
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Industrial Chemistry, Biotechnology, Chemical Engineering, Process Engineering