2021
DOI: 10.1007/s10570-021-04235-5
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A novel polydimethylsiloxane comb-shaped copolymer containing P–N elements toward cotton fabrics: flame retardancy and antibacterial property

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Cited by 6 publications
(3 citation statements)
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“…As showed in the FTIR spectrum of PR‐DPCP, it can be seen that the association OH peak shifted to 3380 cm −1 , which was due to the partial substitution of OH in PR by DPCP and the weakness of association OH. The characteristic peak of PCl (at 610 cm −1 ) disappeared, which further indicated that OH in PR has been successfully replaced by DPCP 22 …”
Section: Resultsmentioning
confidence: 97%
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“…As showed in the FTIR spectrum of PR‐DPCP, it can be seen that the association OH peak shifted to 3380 cm −1 , which was due to the partial substitution of OH in PR by DPCP and the weakness of association OH. The characteristic peak of PCl (at 610 cm −1 ) disappeared, which further indicated that OH in PR has been successfully replaced by DPCP 22 …”
Section: Resultsmentioning
confidence: 97%
“…The characteristic peak of P Cl (at 610 cm À1 ) disappeared, which further indicated that OH in PR has been successfully replaced by DPCP. 22…”
Section: Ftir Analysismentioning
confidence: 99%
“…It was veri ed again that the CDs-APP ame retardant layer promoted the thermal decomposition of cotton fabrics into char, in other words, the effect of catalytic char formation was exerted, which was consistent with the ame retardant test results of cotton fabrics in 3.3. This phenomenon might be caused by the phosphoric acid generated during the degradation of CDs-APP or by promoting the dehydration reaction of cotton cellulose [20].…”
Section: Tg-ir Analysis Of Ame Retardant Cotton Fabricsmentioning
confidence: 99%