56
N. Vigneshwaran and A. Arputharaj
35. Shaw S (2010) Halogenated flame retardants: do the fire safety benefits justify the risks? Rev
Environ Health 261
36. Koch C, Sures B (2019) Degradation of brominated polymeric flame retardants and effects of
generated decomposition products. Chemosphere 227:329–333
37. Samanta AK, Bhattacharyya R, Jose S, Basu G, Chowdhury R (2017) Fire retardant finish of
jute fabric with nano zinc oxide. Cellulose 24:1143–1157
38. Sheshama M, Khatri H, Suthar M, Basak S, Ali W (2017) Bulk vs. nano ZnO: influence of fire
retardant behavior on sisal fibre yarn. Carbohyd Polym 175:257–264
39. Chang S, Slopek RP, Condon B, Grunlan JC (2014) Surface coating for flame-retardant behavior
of cotton fabric using a continuous layer-by-layer process. Ind Eng Chem Res 53:3805–3812
40. Yu M, Gu G, Meng W-D, Qing F-L (2007) Superhydrophobic cotton fabric coating based on
a complex layer of silica nanoparticles and perfluorooctylated quaternary ammonium silane
coupling agent. Appl Surf Sci 253:3669–3673
41. Zhao Y, Tang Y, Wang X, Lin T (2010) Superhydrophobic cotton fabric fabricated by
electrostatic assembly of silica nanoparticles and its remarkable buoyancy. Appl Surf Sci
256:6736–6742
42. Qiang S, Chen K, Yin Y, Wang C (2017) Robust UV-cured superhydrophobic cotton fabric
surfaces with self-healing ability. Mater Des 116:395–402
43. Rahman MJ, Mieno T (2015) Conductive cotton textile from safely functionalized carbon
nanotubes. J Nanomater 2015:10
44. Shateri-Khalilabad M, Yazdanshenas ME (2013) Fabricating electroconductive cotton textiles
using graphene. Carbohyd Polym 96:190–195
45. Ren J, Wang C, Zhang X, Carey T, Chen K, Yin Y, Torrisi F (2017) Environmentally-friendly
conductive cotton fabric as flexible strain sensor based on hot press reduced graphene oxide.
Carbon 111:622–630
46. Bao L, Li X (2012) Towards textile energy storage from cotton T-shirts. Adv Mater 24:3246–
3252
47. Gao Z, Zhang Y, Song N, Li X (2017) Towards flexible lithium-sulfur battery from natural
cotton textile. Electrochim Acta 246:507–516
N. Vigneshwaran and A. Arputharaj
35. Shaw S (2010) Halogenated flame retardants: do the fire safety benefits justify the risks? Rev
Environ Health 261
36. Koch C, Sures B (2019) Degradation of brominated polymeric flame retardants and effects of
generated decomposition products. Chemosphere 227:329–333
37. Samanta AK, Bhattacharyya R, Jose S, Basu G, Chowdhury R (2017) Fire retardant finish of
jute fabric with nano zinc oxide. Cellulose 24:1143–1157
38. Sheshama M, Khatri H, Suthar M, Basak S, Ali W (2017) Bulk vs. nano ZnO: influence of fire
retardant behavior on sisal fibre yarn. Carbohyd Polym 175:257–264
39. Chang S, Slopek RP, Condon B, Grunlan JC (2014) Surface coating for flame-retardant behavior
of cotton fabric using a continuous layer-by-layer process. Ind Eng Chem Res 53:3805–3812
40. Yu M, Gu G, Meng W-D, Qing F-L (2007) Superhydrophobic cotton fabric coating based on
a complex layer of silica nanoparticles and perfluorooctylated quaternary ammonium silane
coupling agent. Appl Surf Sci 253:3669–3673
41. Zhao Y, Tang Y, Wang X, Lin T (2010) Superhydrophobic cotton fabric fabricated by
electrostatic assembly of silica nanoparticles and its remarkable buoyancy. Appl Surf Sci
256:6736–6742
42. Qiang S, Chen K, Yin Y, Wang C (2017) Robust UV-cured superhydrophobic cotton fabric
surfaces with self-healing ability. Mater Des 116:395–402
43. Rahman MJ, Mieno T (2015) Conductive cotton textile from safely functionalized carbon
nanotubes. J Nanomater 2015:10
44. Shateri-Khalilabad M, Yazdanshenas ME (2013) Fabricating electroconductive cotton textiles
using graphene. Carbohyd Polym 96:190–195
45. Ren J, Wang C, Zhang X, Carey T, Chen K, Yin Y, Torrisi F (2017) Environmentally-friendly
conductive cotton fabric as flexible strain sensor based on hot press reduced graphene oxide.
Carbon 111:622–630
46. Bao L, Li X (2012) Towards textile energy storage from cotton T-shirts. Adv Mater 24:3246–
3252
47. Gao Z, Zhang Y, Song N, Li X (2017) Towards flexible lithium-sulfur battery from natural
cotton textile. Electrochim Acta 246:507–516
