112
4 PVA Bionanocomposite Films with Different Particle …
7. Bogdanovic U, Vodnik V, Mitric M, Dimitrijevic S, Skapin SD, Zunic V, Budimir M, Stoiljkovic
M (2015) Nanomaterial with high antimicrobial efficacy-copper/polyaniline nanocomposite.
ACS Appl Mater Interfaces 7(3):1955–1966
8. Mousa M, Dong Y (2018) Novel three-dimensional interphase characterisation of polymer
nanocomposites using nanoscaled topography. Nanotechnology 29(38):385701
9. Komarov PV, Mikhailov IV, Chiu YT, Chen SM, Khalatur PG (2013) Molecular dynamics
study of interface structure in composites comprising surface-modified SiO 2 nanoparticles and
a polyimide matrix. Macromol Theory Simul 22(3):187–197
10. Meng D, Kumar SK, Lane JMD, Grest GS (2012) Effective interactions between grafted
nanoparticles in a polymer matrix. Soft Matter 8(18):5002–5010
11. Ganesan V, Jayaraman A (2014) Theory and simulation studies of effective interactions, phase
behavior and morphology in polymer nanocomposites. Soft Matter 10(1):13–38
12. Mousa M, Dong Y (2020) The role of nanoparticle shapes and structures in the material
characterisation of polyvinyl alcohol (PVA) bionanocomposite films. Polymers 12:264
13. Ploehn HJ, Liu C (2006) Quantitative analysis of montmorillonite platelet size by atomic force
microscopy. Ind Eng Chem Res 45(21):7025–7034
14. Aloui H, Khwaldia K, Hamdi M, Fortunati E, Kenny JM, Buonocore GG, Lavorgna M (2016)
Synergistic effect of halloysite and cellulose nanocrystals on the functional properties of PVA
based nanocomposites. ACS Sustain Chem Eng 4(3):794–800
15. Ramadan AR, Esawi AM, Gawad AA (2010) Effect of ball milling on the structure of Na + -
montmorillonite and organo-montmorillonite (Cloisite 30B). Appl Clay Sci 47(3–4):196–202
16. Mallakpour S, Shahangi V (2013) Bio-modification of Cloisite Na + with chiral L-leucine and
preparation of new poly (vinyl alcohol)/organo-nanoclay bionanocomposite films. Synth React
Inorg M 43(8):966–971
17. Fu D, Zhang Y, Lv F, Chu PK, Shang J (2012) Removal of organic materials from TNT red
water by Bamboo Charcoal adsorption. Chem Eng J 193:39–49
18. She B, Tao X, Huang T, Lu G, Zhou Z, Guo C, Dang Z (2016) Effects of nano bamboo charcoal
on PAHs-degrading strain Sphingomonas sp. GY2B. Ecotoxicol Environ Saf 125:35–42
19. Lorenzoni M, Evangelio L, Verhaeghe S, Nicolet C, Navarro C, Pérez-Murano F (2015)
Assessing the local nanomechanical properties of self-assembled block copolymer thin films
by peak force tapping. Langmuir 31(42):11630–11638
20. Babu SS, Mathew S, Kalarikkal N, Thomas S (2016) Antimicrobial, antibiofilm, and microbial
barrier properties of poly (ε-caprolactone)/Cloisite 30B thin films. 3 Biotech 6(2):249
21. Huang D, Wang W, Kang Y, Wang A (2012) A chitosan/poly (vinyl alcohol) nanocomposite
film reinforced with natural halloysite nanotubes. Polym Compos 33(10):1693–1699
22. Abdullah ZW, Dong Y, Davies IJ, Barbhuiya S (2017) PVA, PVA blends, and their nanocomposites for biodegradable packaging application. Polym Plast Technol Eng 56(12):1307–1344
23. Carli LN, Crespo JS, Mauler RS (2011) PHBV nanocomposites based on organomodified
montmorillonite and halloysite: the effect of clay type on the morphology and thermal and
mechanical properties. Compos Part A Appl Sci Manuf 42:1601–1608
24. Ray SS, Okamoto M (2003) Polymer/layered silicate nanocomposites: a review from
preparation to processing. Prog Polym Sci 28(11):1539–1641
25. Swapna VP, Suresh KI, Saranya V, Rahana MP, Stephen R (2015) Thermal properties of
poly (vinyl alcohol)(PVA)/halloysite nanotubes reinforced nanocomposites. Int J Plast Technol
19(1):124–136
26. Rhim JW, Hong SI, Ha CS (2009) Tensile, water vapor barrier and antimicrobial properties of
PLA/nanoclay composite films. LWT-Food Sci Technol 42(2):612–617
27. Strawhecker KE, Manias E (2000) Structure and properties of poly (vinyl alcohol)/Na+
montmorillonite nanocomposites. Chem Mater 12(10):2943–2949
28. Gaume J, Taviot-Gueho C, Cros S, Rivaton A, Therias S, Gardette JL (2012) Optimization of
PVA clay nanocomposite for ultra-barrier multilayer encapsulation of organic solar cells. Sol
Energy Mater Sol Cells 99:240–249
29. Li S, Li X, Deng Q, Li D (2015) Three kinds of charcoal powder reinforced ultra-high molecular
weight polyethylene composites with excellent mechanical and electrical properties. Mater Des
85:54–59
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