Author:
Saeed Ahmed Muhammed,Taha Ahmed Gaber,Dardeer Hemat Mohamed,Aly Moustafa Fawzy
Abstract
AbstractChitosan (Chs)-salicylaldehyde (Sal) polymer derivatives were formed via the reaction of Chs-Sal with zinc oxide nanoparticles (ZnO NPs) and beta-cyclodextrin (β-CD). These polymers were synthesized through inclusion with β-CD and doping with ZnO NPs to give pseudopolyrotaxane and Chs-Sal/ZnO NPs composite, respectively, for low-temperature detection and sensing of NH3 vapors as great significance in environmental control and human health. Additionally, the polymer (Chs-Sal/β-CD/ZnO NPs) was prepared via the insertion of generated composite (Chs-Sal/ZnO NPs) through β-cyclodextrin ring. The structural and morphological characterizations of the synthesized derivatives were confirmed by utilizing FTIR, XRD and, SEM, respectively. Also, the optical properties and thermal gravimetric analysis (TGA) of the synthesized polymers were explored. The obtained results confirmed that using β-CD or ZnO NPs for modification of polymer (Chs-Sal) dramatically enhanced thermal stability and optical features of the synthesized polymers. Investigations on the NH3-sensing properties of Chs-Sal/β-CD/ZnO NPs composite were carried out at concentrations down to 10 ppm and good response and recovery times (650 s and 350 s, respectively) at room temperature (RT) and indicated that modification by β-CD and doping with ZnO NPs effectively improves the NH3-sensing response of Chs-Sal from 712 to 6192 using Chs-Sal/β-CD/ZnO NPs, respectively, with low LOD and LOQ of 0.12 and 0.4 ppb, respectively.
Publisher
Springer Science and Business Media LLC
Reference83 articles.
1. Wang, W. et al. Chitosan derivatives and their application in biomedicine. Int. J. Mol. Sci. 21, 487 (2020).
2. Spychalska, K., Zając, D., Baluta, S., Halicka, K. & Cabaj, J. Functional polymers structures for (bio)sensing application—A review. Polymers 12, 1154 (2020).
3. Muhammad, A., Rahman, M. R., Baini, R. & Bin Bakri, M. K. 8—Applications of sustainable polymer composites in automobile and aerospace industry. In Woodhead Publishing Series in Composites Science and Engineering (ed. Rahman, M. R.) 185–207 (Woodhead Publishing, 2021).
4. Paolillo, S., Bose, R. K., Santana, M. H. & Grande, A. M. Intrinsic self-healing epoxies in polymer matrix composites (PMCs) for aerospace applications. Polymers 13, 201 (2021).
5. Sadasivuni, K. K. et al. Chapter 11—Polymers in electronics. In Polymer Science and Innovative Applications (eds AlMaadeed, M. A. A. et al.) 365–392 (Elsevier, 2020).
Cited by
6 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献