39
reactive ink-jet printing technique. Synthetic Metals, 202, 49–62. https://doi.org/10.1016/j.
synthmet.2015.01.027.
Struszczyk, M., Puszkarz, A., Wilbik-Hałgas, B., Cichecka, M., Litwa, P., Urbaniak-Domagała,
W., & Krucinska, I. (2014). The surface modification of ballistic textiles using plasma-assisted
chemical vapor deposition (PACVD). Textile Research Journal, 84(19), 2085–2093. https://doi.
org/10.1177/0040517514528559.
Struszczyk, M. H., Urbaniak-Domagala, W., Puszkarz, A. K., Wilbik-Halgas, B., Cichecka, M.,
Sztajnowski, S., Puchalski, M., Mikias, M., & Krucinska, I. (2017). Structural changes in the
PACVD-modified para-aramid, ballistic textiles during the accelerated aging. Fibres & Textiles
in Eastern Europe, 25(1), 36–41. https://doi.org/10.5604/12303666.1227880.
Tang, Y., Li, Y., Zhang, S., Yang, J., Dang, N., & Liang, X. (2006). Fixation of a tetraethylene
pentamine dye on cotton and silk by bifunctional crosslinkers. Coloration Technology, 122(2),
82–85. https://doi.org/10.1111/j.1478-4408.2006.00005.x.
ter Schiphorst, J., van den Broek, M., de Koning, T., Murphy, J. N., Schenning, A. P. H. J., &
Esteves, A. C. C. (2016). Dual light and temperature responsive cotton fabric functionalized
with a surface-grafted spiropyran–NIPAAm-hydrogel. Journal of Materials Chemistry A,
4(22), 8676–8681. https://doi.org/10.1039/c6ta00161k.
Tessarolo, M., Possanzini, L., Campari, E. G., Bonfiglioli, R., Violante, F. S., Bonfiglio, A., &
Fraboni, B. (2018). Adaptable pressure textile sensors based on a conductive polymer. Flexible
and Printed Electronics, 3(3), 034001. https://doi.org/10.1088/2058-8585/aacbee.
Tsubokawa, N., & Yoshihara, T. (1993). Cationic grafting of vinyl polymers onto a carbon whisker,
initiated by acylium perchlorate groups introduced onto the surface. Journal of Macromolecular
Science, Part A, 30(8), 517–529. https://doi.org/10.1080/10601329308009427.
Tsubokawa, N., & Yoshihara, T. (1994). Modification of carbon whisker surface by the grafting
of polyacetals: Cationic ring-opening polymerization of cyclic acetals initiated by acylium
perchlorate groups introduced onto the surface. Composite Interfaces, 2(2), 71–80. https://doi.
org/10.1163/156855494x00229.
Tsubokawa, N., Hamada, H., & Sone, Y. (1989). Grafting of Polyesters from Carbon Fiber.
Anionic ring-opening copolymerization of epoxides with cyclic acid anhydrides initiated by
COOK groups on the surface of carbon fiber. Polymer-Plastics Technology and Engineering,
28(2), 201–214. https://doi.org/10.1080/03602558908048594.
Tsukruk, V. V. (1997). Assembly of supramolecular polymers in ultrathin films. Progress in
Polymer Science, 22(2), 247–311. https://doi.org/10.1016/s0079-6700(96)00005-6.
Tulos, N., Harbottle, D., Hebden, A., Goswami, P., & Blackburn, R. S. (2019). Kinetic analysis of
cellulose acetate/cellulose II hybrid fiber formation by alkaline hydrolysis. ACS Omega, 4(3),
4936–4942. https://doi.org/10.1021/acsomega.9b00159.
Vecchiato, S., Ahrens, J., Pellis, A., Scaini, D., Mueller, B., Herrero Acero, E., & Guebitz,
G. M. (2017). Enzymatic functionalization of HMLS-polyethylene terephthalate fabrics
improves the adhesion to rubber. ACS Sustainable Chemistry & Engineering, 5(8), 6456–6465.
https://doi.org/10.1021/acssuschemeng.7b00475.
Wang, J., & Wei, J. (2018). Functionalization of loofah fibers via surface-initiated AGET ATRP for
synergic adsorption of multiple pollutants from water. Materials Letters, 210, 214–217. https://
doi.org/10.1016/j.matlet.2017.09.039.
Wang, X., Chang, L., Shi, X., & Wang, L. (2019). Effect of hot-alkali treatment on the structure
composition of jute fabrics and mechanical properties of laminated composites. Materials,
12(9), 1386. https://doi.org/10.3390/ma12091386.
White, P. (2001). Lyocell: The production process and market development. In C. Woodings (Ed.),
Regenerated cellulose fibres (pp. 62–87). Cambridge, England: Woodhead Publishing. https://
doi.org/10.1533/9781855737587.62.
Wu, H.-L., Hou, X.-X., Branford-White, C., Sun, X.-Z., Tao, L., Um-I-Zahra, S., & Zhu,
L.-M. (2015). Drug-loaded microparticles prepared by the one-step deposition of calcium carbonate/alginate onto cotton fabrics. Journal of Applied Polymer Science, 132(40). https://doi.
org/10.1002/app.42618.
3 Reactive Modification of Fiber Polymer Materials for Textile Applications
reactive ink-jet printing technique. Synthetic Metals, 202, 49–62. https://doi.org/10.1016/j.
synthmet.2015.01.027.
Struszczyk, M., Puszkarz, A., Wilbik-Hałgas, B., Cichecka, M., Litwa, P., Urbaniak-Domagała,
W., & Krucinska, I. (2014). The surface modification of ballistic textiles using plasma-assisted
chemical vapor deposition (PACVD). Textile Research Journal, 84(19), 2085–2093. https://doi.
org/10.1177/0040517514528559.
Struszczyk, M. H., Urbaniak-Domagala, W., Puszkarz, A. K., Wilbik-Halgas, B., Cichecka, M.,
Sztajnowski, S., Puchalski, M., Mikias, M., & Krucinska, I. (2017). Structural changes in the
PACVD-modified para-aramid, ballistic textiles during the accelerated aging. Fibres & Textiles
in Eastern Europe, 25(1), 36–41. https://doi.org/10.5604/12303666.1227880.
Tang, Y., Li, Y., Zhang, S., Yang, J., Dang, N., & Liang, X. (2006). Fixation of a tetraethylene
pentamine dye on cotton and silk by bifunctional crosslinkers. Coloration Technology, 122(2),
82–85. https://doi.org/10.1111/j.1478-4408.2006.00005.x.
ter Schiphorst, J., van den Broek, M., de Koning, T., Murphy, J. N., Schenning, A. P. H. J., &
Esteves, A. C. C. (2016). Dual light and temperature responsive cotton fabric functionalized
with a surface-grafted spiropyran–NIPAAm-hydrogel. Journal of Materials Chemistry A,
4(22), 8676–8681. https://doi.org/10.1039/c6ta00161k.
Tessarolo, M., Possanzini, L., Campari, E. G., Bonfiglioli, R., Violante, F. S., Bonfiglio, A., &
Fraboni, B. (2018). Adaptable pressure textile sensors based on a conductive polymer. Flexible
and Printed Electronics, 3(3), 034001. https://doi.org/10.1088/2058-8585/aacbee.
Tsubokawa, N., & Yoshihara, T. (1993). Cationic grafting of vinyl polymers onto a carbon whisker,
initiated by acylium perchlorate groups introduced onto the surface. Journal of Macromolecular
Science, Part A, 30(8), 517–529. https://doi.org/10.1080/10601329308009427.
Tsubokawa, N., & Yoshihara, T. (1994). Modification of carbon whisker surface by the grafting
of polyacetals: Cationic ring-opening polymerization of cyclic acetals initiated by acylium
perchlorate groups introduced onto the surface. Composite Interfaces, 2(2), 71–80. https://doi.
org/10.1163/156855494x00229.
Tsubokawa, N., Hamada, H., & Sone, Y. (1989). Grafting of Polyesters from Carbon Fiber.
Anionic ring-opening copolymerization of epoxides with cyclic acid anhydrides initiated by
COOK groups on the surface of carbon fiber. Polymer-Plastics Technology and Engineering,
28(2), 201–214. https://doi.org/10.1080/03602558908048594.
Tsukruk, V. V. (1997). Assembly of supramolecular polymers in ultrathin films. Progress in
Polymer Science, 22(2), 247–311. https://doi.org/10.1016/s0079-6700(96)00005-6.
Tulos, N., Harbottle, D., Hebden, A., Goswami, P., & Blackburn, R. S. (2019). Kinetic analysis of
cellulose acetate/cellulose II hybrid fiber formation by alkaline hydrolysis. ACS Omega, 4(3),
4936–4942. https://doi.org/10.1021/acsomega.9b00159.
Vecchiato, S., Ahrens, J., Pellis, A., Scaini, D., Mueller, B., Herrero Acero, E., & Guebitz,
G. M. (2017). Enzymatic functionalization of HMLS-polyethylene terephthalate fabrics
improves the adhesion to rubber. ACS Sustainable Chemistry & Engineering, 5(8), 6456–6465.
https://doi.org/10.1021/acssuschemeng.7b00475.
Wang, J., & Wei, J. (2018). Functionalization of loofah fibers via surface-initiated AGET ATRP for
synergic adsorption of multiple pollutants from water. Materials Letters, 210, 214–217. https://
doi.org/10.1016/j.matlet.2017.09.039.
Wang, X., Chang, L., Shi, X., & Wang, L. (2019). Effect of hot-alkali treatment on the structure
composition of jute fabrics and mechanical properties of laminated composites. Materials,
12(9), 1386. https://doi.org/10.3390/ma12091386.
White, P. (2001). Lyocell: The production process and market development. In C. Woodings (Ed.),
Regenerated cellulose fibres (pp. 62–87). Cambridge, England: Woodhead Publishing. https://
doi.org/10.1533/9781855737587.62.
Wu, H.-L., Hou, X.-X., Branford-White, C., Sun, X.-Z., Tao, L., Um-I-Zahra, S., & Zhu,
L.-M. (2015). Drug-loaded microparticles prepared by the one-step deposition of calcium carbonate/alginate onto cotton fabrics. Journal of Applied Polymer Science, 132(40). https://doi.
org/10.1002/app.42618.
3 Reactive Modification of Fiber Polymer Materials for Textile Applications
