76
L. J. Rather et al.
8. Mucha H, Hofer D, Aßflag S, Swere M (2002) Antimicrobial finishes and modification.
Melliand Text Berichte 83(4):53–56
9. Perelshtein I, Perkas N, Gedanken A (2016) Ultrasonic coating of textiles by antibacterial and
antibiofilm nanoparticles. In: Handbook of ultrasonics and sonochemistry, vol 967
10. Syafiuddin A (2019) Toward a comprehensive understanding of textiles functionalized with
silver nanoparticles. J Chin Chem Soc 1–22
11. Quincy III RB, Karandikar BM, MacDonald JG, Elshani T (2011) Dual element odor control
in personal care products. Google patents
12. Cai K, Bossert J, Jandt KD (2006) Does the nanometre scale topography of titanium influence
protein adsorption and cell proliferation? Colloids Surf B 49:136–144
13. Han K, Yu M (2006) Study of the preparation and properties of UV-blocking fabrics of a
PET/TiO 2 nanocomposite prepared by in situ polycondensation. J Appl Polym Sci 100:1588–
1593
14. Ikezawa S, Homyara H, Kubota T, Suzuki R, Koh S, Mutuga F, Yoshioka T, Nishiwaki A,
Ninomiya Y, Takahashi M, Baba K, Kida K, Hara T, Famakinwa T (2001) Applications of
TiO film for environmental purification deposited by controlled electron beam-excited plasma.
Thin Solid Films 386:173–176
15. Li D, Haneda H, Hishita S, Ohashi N (2005) Visible-light-driven N–F–Co doped TiO 2
photocatalysts. 2. Optical characterization, photocatalysis, and potential application to air
purification. Chem Mater 17:2596–2602
16. Weibel A, Bouchet R, Knauth P (2006) Electrical properties and defect chemistry of anatase
(TiO 2 ). Solid State Ionics 177:229–236
17. Verran J, Sandoval G, Allen NS, Edge M, Stratton J (2007) Variables affecting the antibacterial
properties of nano and pigmentary titania particles in suspension. Dyes Pigm 73:298–304
18. Reidy DJ, Holmes JD, Morris MA (2006) Preparation of a highly thermally stable titania
anatase phase by addition of mixed zirconia and silica dopants. Ceram Int 32:235–239
19. Wong YWH, Yuen CWM, Leung MYS, Ku SKA, Lam HLI (2006) Selected applications of
nanotechnology in textiles. Autex Res J 6:1–8
20. Michna A, Morga M, Adamczyk Z, Kubiak K (2019) Monolayers of silver nanoparticles
obtained by green synthesis on macrocation modified substrates. Mater Chem Phys 227:224–
235
21. Som C, Wick P, Krug H, Nowack B (2011) Environmental and health effects of nanomaterials
in nanotextiles and facade coatings. Environ Int 37:1131–1142
22. Syafiuddin A, Salmiati S, Hadibarata T, Salim MR, Kueh ABH, Sari AA (2017) A purely
green synthesis of silver nanoparticles using Carica papaya, Manihot esculenta, and Morinda
citrifolia: synthesis and antibacterial evaluations. Bioprocess Biosyst Eng 40:1349–1361
23. Syafiuddin A, Salmiati S, Jonbi J, Fulazzaky MA (2018) Application of the kinetic and
isotherm models for better understanding of the behaviors of silver nanoparticles adsorption
onto different adsorbents. J Environ Manage 218:59–70
24. Ullah H, Wilfred CD, Shaharun MS (2017) Synthesis of silver nanoparticles using ionicliquid-based microwave-assisted extraction from polygonum minus and photodegradation of
methylene blue. J Chin Chem Soc 64:1164–1171
25. El-Rafie M, Mohamed A, Shaheen TI, Hebeish A (2010) Antimicrobial effect of silver
nanoparticles produced by fungal process on cotton fabrics. Carbohyd Polym 80:779–782
26. Montazer M, Alimohammadi F, Shamei A, Rahimi MK (2012) Durable antibacterial and
cross-linking cotton with colloidal silver nanoparticles and butane tetracarboxylic acid without
yellowing. Colloids Surf B Biointerfaces 89:196–202
27. Arnold MS, Avouris P, Pan ZW, Wang ZL (2003) Field-effect transistors based on single
semiconducting oxide nanobelts. J Phys Chem B 107:659–663
28. Becheri A, Durr M, Nostro PL, Baglioni P (2007) Synthesis and characterization of zinc oxide
nanoparticles: application to textiles as UV-absorbers. J Nanopart Res 10:679–689
29. Behnajady MA, Modirshahla N, Hamzavi R (2006) Kinetic study on photocatalytic degradation of C.I. acid yellow 23 by ZnO photocatalyst. J Hazard Mater 133:226–232
L. J. Rather et al.
8. Mucha H, Hofer D, Aßflag S, Swere M (2002) Antimicrobial finishes and modification.
Melliand Text Berichte 83(4):53–56
9. Perelshtein I, Perkas N, Gedanken A (2016) Ultrasonic coating of textiles by antibacterial and
antibiofilm nanoparticles. In: Handbook of ultrasonics and sonochemistry, vol 967
10. Syafiuddin A (2019) Toward a comprehensive understanding of textiles functionalized with
silver nanoparticles. J Chin Chem Soc 1–22
11. Quincy III RB, Karandikar BM, MacDonald JG, Elshani T (2011) Dual element odor control
in personal care products. Google patents
12. Cai K, Bossert J, Jandt KD (2006) Does the nanometre scale topography of titanium influence
protein adsorption and cell proliferation? Colloids Surf B 49:136–144
13. Han K, Yu M (2006) Study of the preparation and properties of UV-blocking fabrics of a
PET/TiO 2 nanocomposite prepared by in situ polycondensation. J Appl Polym Sci 100:1588–
1593
14. Ikezawa S, Homyara H, Kubota T, Suzuki R, Koh S, Mutuga F, Yoshioka T, Nishiwaki A,
Ninomiya Y, Takahashi M, Baba K, Kida K, Hara T, Famakinwa T (2001) Applications of
TiO film for environmental purification deposited by controlled electron beam-excited plasma.
Thin Solid Films 386:173–176
15. Li D, Haneda H, Hishita S, Ohashi N (2005) Visible-light-driven N–F–Co doped TiO 2
photocatalysts. 2. Optical characterization, photocatalysis, and potential application to air
purification. Chem Mater 17:2596–2602
16. Weibel A, Bouchet R, Knauth P (2006) Electrical properties and defect chemistry of anatase
(TiO 2 ). Solid State Ionics 177:229–236
17. Verran J, Sandoval G, Allen NS, Edge M, Stratton J (2007) Variables affecting the antibacterial
properties of nano and pigmentary titania particles in suspension. Dyes Pigm 73:298–304
18. Reidy DJ, Holmes JD, Morris MA (2006) Preparation of a highly thermally stable titania
anatase phase by addition of mixed zirconia and silica dopants. Ceram Int 32:235–239
19. Wong YWH, Yuen CWM, Leung MYS, Ku SKA, Lam HLI (2006) Selected applications of
nanotechnology in textiles. Autex Res J 6:1–8
20. Michna A, Morga M, Adamczyk Z, Kubiak K (2019) Monolayers of silver nanoparticles
obtained by green synthesis on macrocation modified substrates. Mater Chem Phys 227:224–
235
21. Som C, Wick P, Krug H, Nowack B (2011) Environmental and health effects of nanomaterials
in nanotextiles and facade coatings. Environ Int 37:1131–1142
22. Syafiuddin A, Salmiati S, Hadibarata T, Salim MR, Kueh ABH, Sari AA (2017) A purely
green synthesis of silver nanoparticles using Carica papaya, Manihot esculenta, and Morinda
citrifolia: synthesis and antibacterial evaluations. Bioprocess Biosyst Eng 40:1349–1361
23. Syafiuddin A, Salmiati S, Jonbi J, Fulazzaky MA (2018) Application of the kinetic and
isotherm models for better understanding of the behaviors of silver nanoparticles adsorption
onto different adsorbents. J Environ Manage 218:59–70
24. Ullah H, Wilfred CD, Shaharun MS (2017) Synthesis of silver nanoparticles using ionicliquid-based microwave-assisted extraction from polygonum minus and photodegradation of
methylene blue. J Chin Chem Soc 64:1164–1171
25. El-Rafie M, Mohamed A, Shaheen TI, Hebeish A (2010) Antimicrobial effect of silver
nanoparticles produced by fungal process on cotton fabrics. Carbohyd Polym 80:779–782
26. Montazer M, Alimohammadi F, Shamei A, Rahimi MK (2012) Durable antibacterial and
cross-linking cotton with colloidal silver nanoparticles and butane tetracarboxylic acid without
yellowing. Colloids Surf B Biointerfaces 89:196–202
27. Arnold MS, Avouris P, Pan ZW, Wang ZL (2003) Field-effect transistors based on single
semiconducting oxide nanobelts. J Phys Chem B 107:659–663
28. Becheri A, Durr M, Nostro PL, Baglioni P (2007) Synthesis and characterization of zinc oxide
nanoparticles: application to textiles as UV-absorbers. J Nanopart Res 10:679–689
29. Behnajady MA, Modirshahla N, Hamzavi R (2006) Kinetic study on photocatalytic degradation of C.I. acid yellow 23 by ZnO photocatalyst. J Hazard Mater 133:226–232
