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Quantitative analysis of povidone-iodine thin films by X-ray photoelectron spectroscopy and their physicochemical properties

film formers, AAPS PharmSciTech. 10 (2009) 684-691; DOI: 10.1208/s12249-009-9256-8. 21. H. J. Busscher, A. H. Weerkamp, H. C. Mei, A. W. Pelt, H. P. Jong and J. Arends, Measurement of the surface free energy of bacterial cell surfaces and its relevance for adhesion, Appl. Environ. Microbiol. 48 (1984) 980-983. 22. W. Zheng, Surface Wetting Characteristics of Rubbed Polyimide Thin Films, Polymer Thin Films (Ed. A. A. Hashim), In Tech, Croatia 2010, Available from: http

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How to assess orodispersible film quality? A review of applied methods and their modifications

. Madhusudan Rao, Overview on fast dissolving films, Int. J. Pharm. Pharm. Sci . 2 (2010) 29–33. 34. S. Karki, K. Hyeongmin, H. Kim, S. J. Na, D. Shin, K. Jo and J. Lee, Thin films as an emerging platform for drug delivery, AJPS . 11 (2016) 559–574; 35. M. Preis, J. Breitkreutz and N. Sandler, Perspective: Concepts of printing technologies for oral film formulations, Int. J. Pharm . 494 (2015) 578–584; 36. SildenafiIBSAorodispersible film: https

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Evaluation of degradation kinetics for abamectin in formulations using a stability indicating method

avermectin Bla and its two photoisomers using a photo diode array detector, Bull. Environ. Contam. Toxicol . 43 (1989) 499-504; DOI: 10.1007/ BF01701926. 15. L. S. Crouch, W. F. Feely, B. H. Arison, W. J. A. VandenHeuvel, L. F. Colwell, R. A. Stearns, W. F. Kline and P. G. Wislocki, Photodegradation of avermectin B1a thin films on glass, J. Agr. Food Chem . 39 (1991) 1310-1319; DOI: 10.1021/jf00007a024. 16. A. Awasthi, M. Razzak, R. Al-Kassas, J. Harvey and S. Garg, An overview on chemical derivatization and stability aspects of

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Development of hydroxyapatite-ciprofloxacin bone-implants using »Quality by design«

biocompatibility of hydroxyapatite thin film prepared by aerosol deposition, J. Biomater. Res. B: Appl. Biomater.   94 (2010) 353-358; DOI: 10.1002/jbm.b.31658. Q. Z. Chen, C. T. Wong, W. W. Lu, K. M. C. Cheung, J. C. Y. Leong and K. D. K. Luk, Strengthening mechanisms of bone-bonding to crystalline hydroxyapatite in-vivo, Biomaterials   25 (2004) 4243-4254; DOI: 10.1016/j.biomaterials.2003.11.017. D. J. A. Netz, P. Seoulveda, V. C. Pandolfelli, A. C. C. Spadaro, J. B. Alencastre, M. V. L. B. Bentley and J. M. Marchetti

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Application of instrumented nanoindentation in preformulation studies of pharmaceutical active ingredients and excipients

October 23, 2015. 83.; access date October 25, 2015. 84. The influence of surface roughness on instrumented indentation testing (IIT); access date January 25, 2014. 85. K. I. Schiffmann, Determination of fracture toughness of bulk materials and thin films by nanoindentation: comparison of different models, Philosoph. Magazine 91 (2011) 1163-1178; DOI: 10.1080/14786435.2010.487984. 86. L. J. Taylor

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Chemistry and pharmacological diversity of quinoxaline motifs as anticancer agents

organic thin film transistor applications, J. Mat. Chem . 22 (2012) 4450–4458; 13. O. O. Ajani, C. A. Obafemi, O. C. Nwinyi and D. A. Akinpelu, Microwave assisted synthesis and antimicrobial activity of 2-quinoxalinone-3-hydrazone derivatives, Bioorg. Med. Chem . 18 (2010) 214–221; 14. S. Srivastava, J. Banerjee and N. Srestha, Quinoxaline as a potent heterocyclic moiety, IOSR J. Pharm . 4 (2014) 17–27; 15. M. Veiraj and D. Sowmya

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Production of oxide coatings by sol-gel method and electrophoresis

.: Effect of titanium on selected oral bacterial species in vitro. Eur. J. Oral. Sci., 103, 382, 1995. 12. Liuxue Z., et al.: Low temperature deposition of TiO2 thin films on polyvinyl alcohol fibers with photocatalytical and antibacterial activities. Appl. Surf. Sci., 254, 1771, 2008. 13. Milella E. et al.: Preparation and characterisation of titania/ hydroxyapatite composite coatings obtained by sol-gel process. Biomaterials, 22, 1425, 2001. 14. Szałakowska E., Masalski J., Głuszek J.: Electrochemical evaluationof

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