401609. Polymers and plastics


Title401609. Polymers and plastics
Parent4016. Materials engineering

Latest research outputs

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A Si-containing polyphosphoramide via green chemistry for fire-retardant polylactide with well-preserved mechanical and transparent properties
Feng, Jiabing, Ma, Zhewen, Xu, Zhiguang, Xie, Hongyan, Lu, Yixia, Maluk, Cristian, Song, Pingan, Bourbigot, Serge and Wang, Hao. 2021. "A Si-containing polyphosphoramide via green chemistry for fire-retardant polylactide with well-preserved mechanical and transparent properties." Chemical Engineering Journal. 431 (Part 3), pp. 1-13. https://doi.org/10.1016/j.cej.2021.134259

Article

Recent advances in fire-retardant rigid polyurethane foam
Zhu, Menghe, Ma, Zhewen, Liu, Lei, Zhang, Jianzhong, Huo, Siqi and Song, Pingan. 2021. "Recent advances in fire-retardant rigid polyurethane foam." Journal of Materials Science and Technology. 112, pp. 315-328. https://doi.org/10.1016/j.jmst.2021.09.062

Article

Sulfonated Block Ionomers Enable Transparent, Fire-Resistant, Tough yet Strong Polycarbonate
Sai, Ting, Ran, Shiya, Huo, Siqi, Guo, Zhenghong, Song, Pingan and Fang, Zhengping. 2021. "Sulfonated Block Ionomers Enable Transparent, Fire-Resistant, Tough yet Strong Polycarbonate." Chemical Engineering Journal. 433, pp. 1-13. https://doi.org/10.1016/j.cej.2021.133264

Article

P, N-decorated halloysite nanotubes for flame retardancy enhancement of polyamide 6/aluminum diethylphosphinate
He, Wentao, Xu, Huahui, Song, Pingan, Xiang, Yushu and Qin, Shuhao. 2022. "P, N-decorated halloysite nanotubes for flame retardancy enhancement of polyamide 6/aluminum diethylphosphinate." Polymer Degradation and Stability. 196, pp. 1-11. https://doi.org/10.1016/j.polymdegradstab.2022.109847

Article

In-situ performance evaluation of large shape memory polymer components via distributed optical fibre sensors
Herath, Madhubhashitha, Emmanuel, Chris, Epaarachchi, Jayantha and Jeewantha, Janitha. 2021. "In-situ performance evaluation of large shape memory polymer components via distributed optical fibre sensors." 10th International Conference on Information and Automation for Sustainability (ICIAfS 2021). Negambo, Sri Lanka 11 - 13 Aug 2021 United States. https://doi.org/10.1109/ICIAfS52090.2021.9605868

Paper

Development and characterization of shape memory polymers for non-invasive biomedical applications
Jeewantha, Janitha, Emmanuel, Chris, Herath, Madhubhashitha, Islam, Mainul and Epaarachchi, Jayantha. 2021. "Development and characterization of shape memory polymers for non-invasive biomedical applications." ASME 2021 Conference on Smart Materials, Adaptive Structures and Intelligent Systems (SMASIS2021). United States and Online New York, United States. https://doi.org/10.1115/SMASIS2021-66024

Paper

Shape memory polymer composites and their smart structural applications
Herath, Madhubhashitha and Epaarachchi, Jayantha. 2021. "Shape memory polymer composites and their smart structural applications." Low, It-Meng and Dong, Yu (ed.) Composite materials: manufacturing, properties and applications. Netherlands. Elsevier. pp. 581-610

Edited book (chapter)

Multi-attribute parametric optimisation of shape memory polymer properties for adaptive orthopaedic plasters
Jeewantha, L. H. J., Emmanuel, K. D. C., Herath, H. M. C. M., Islam, M. M., Fang, L. and Epaarachchi, J. A.. 2022. "Multi-attribute parametric optimisation of shape memory polymer properties for adaptive orthopaedic plasters." Materialia. 21, pp. 1-12. https://doi.org/10.1016/j.mtla.2022.101325

Article

High-fidelity replication of thermoplastic microneedles with open microfluidic channels
Faraji Rad, Zahra, Nordon, Robert E., Anthony, Carl J., Bilston, Lynne, Prewett, Philip D., Arns, Ji-Youn, Arns, Christoph H., Zhang, Liangchi and Davies, Graham J.. 2017. "High-fidelity replication of thermoplastic microneedles with open microfluidic channels." Microsystems and Nanoengineering. 3, pp. 1-11. https://doi.org/10.1038/micronano.2017.34

Article

Dynamic Nanoconfinement Enabled Highly Stretchable and Supratough Polymeric Materials with Desirable Healability and Biocompatibility
Liu, Lei, Zhu, Menghe, Xu, Xiaodong, Ma, Zhewen, Jiang, Zhen, Pich, Andrij, Wang, Hao, Song, Pingan and Li, X.. 2021. "Dynamic Nanoconfinement Enabled Highly Stretchable and Supratough Polymeric Materials with Desirable Healability and Biocompatibility." Advanced Materials. 33 (51), pp. 1-11. https://doi.org/10.1002/adma.202105829

Article

A cleaner processing approach for cellulose reinforced thermoplastic polyurethane nanocomposites
Amin, Khairatun Najwa Mohd, Chaleat, Celine, Edwards, Grant, Martin, Darren J. and Annamalai, ratheep Kumar. 2022. "A cleaner processing approach for cellulose reinforced thermoplastic polyurethane nanocomposites." Polymer Engineering and Science. 62 (3), pp. 949-961. https://doi.org/10.1002/pen.25899

Article

A phosphorus/silicon-based, hyperbranched polymer for high-performance, fire-safe, transparent epoxy resins
Shi, Qui, Huo, Siqi, Wang, Cheng, Ye, Guofeng, Yu, Lingfeng, Fang, Zhengping, Wang, Hao and Liu, Zhitian. 2022. "A phosphorus/silicon-based, hyperbranched polymer for high-performance, fire-safe, transparent epoxy resins." Polymer Degradation and Stability. 203, pp. 1-12. https://doi.org/10.1016/j.polymdegradstab.2022.110065

Article

A phosphaphenanthrene-benzimidazole derivative for enhancing fire safety of epoxy resins
Xu, Yixiang, Wang, Junjie, Zhang, Wenbin, Huo, Siqi, Fang, Zhengping, Song, Pingan, Wang, Dong and Wang, Hao. 2022. "A phosphaphenanthrene-benzimidazole derivative for enhancing fire safety of epoxy resins." Reactive and Functional Polymers. 180, pp. 1-9. https://doi.org/10.1016/j.reactfunctpolym.2022.105390

Article

Phenylboronic acid-decorated ZrP nanosheets for enhancing fire resistance, smoke suppression, and water/acid/alkali tolerance of intumescent coatings
Wang, Cheng, Huo, Siqi, Ye, Guofeng, Shi, Qui, Fang, Zhengping, Wang, Hao and Liu, Zhitian. 2022. "Phenylboronic acid-decorated ZrP nanosheets for enhancing fire resistance, smoke suppression, and water/acid/alkali tolerance of intumescent coatings." Colloids and Surfaces A: Physicochemical and Engineering Aspects. 655. https://doi.org/10.1016/j.colsurfa.2022.130292

Article

Flame-retardant single-component epoxy resin cured by benzimidazolyl-substituted cyclotriphosphazene: Storage stability, curing behaviors and flame retardancy
Hu, Ben, Wang, Jun, Wang, Jingsheng, Yang, Shuang, Li, Chang, Wang, Fengyi, Huo, Siqi, Song, Pingan, Fang, Zhengping and Wang, Hao. 2022. "Flame-retardant single-component epoxy resin cured by benzimidazolyl-substituted cyclotriphosphazene: Storage stability, curing behaviors and flame retardancy." Polymer Degradation and Stability. 204. https://doi.org/10.1016/j.polymdegradstab.2022.110092

Article

Facile fabrication of single-component flame-retardant epoxy resin with rapid curing capacity and satisfied thermal resistance
Zhao, ZeKun, Wang, Jun, Wang, Jingsheng, Chen, Kaiwen, Zhang, Bin, Chen, Qiufei, Guo, Pengzong, Wang, Xiao, Liu, Fu, Huo, Siqi and Yang, Shuang. 2022. "Facile fabrication of single-component flame-retardant epoxy resin with rapid curing capacity and satisfied thermal resistance." Reactive and Functional Polymers. 170. https://doi.org/10.1016/j.reactfunctpolym.2021.105103

Article

Corrigendum to ’A phosphorus/silicon-based, hyperbranched polymer for high-performance, fire-safe, transparent epoxy resins’ [Polymer Degradation and Stability, 203 (2022) 110065]
Shi, Qiu, Huo, Siqi, Wang, Cheng, Ye, Guofeng, Yu, Lingfeng, Fang, Zhengping, Wang, Hao and Liu, Zhitian. 2022. "Corrigendum to ’A phosphorus/silicon-based, hyperbranched polymer for high-performance, fire-safe, transparent epoxy resins’ [Polymer Degradation and Stability, 203 (2022) 110065]." Polymer Degradation and Stability. 204. https://doi.org/10.1016/j.polymdegradstab.2022.110105

Notes or commentaries

Green and Facile Synthesis of Bio-Based, Flame-Retardant, Latent Imidazole Curing Agent for Single-Component Epoxy Resin
Wang, Jingsheng, Huo, Siqi, Wang, Jun, Yang, Shuang, Chen, Kaiwen, Li, Chang, Fang, De, Fang, Zhengping, Song, Pingan and Wang, Hao. 2022. "Green and Facile Synthesis of Bio-Based, Flame-Retardant, Latent Imidazole Curing Agent for Single-Component Epoxy Resin ." ACS Applied Polymer Materials. 4 (5), pp. 3564-3574. https://doi.org/10.1021/acsapm.2c00138

Article

Cyanate esters as a high performing shape memory polymer: A review
Jayalath, H.T.S., Herath, Madhubhashitha and Epaarachchi, Jayantha. 2022. "Cyanate esters as a high performing shape memory polymer: A review." 3rd International Conference on Aspects of Materials Science and Engineering (ICAMSE2022). Chandigarh, India 04 - 05 Mar 2022 Netherlands. Elsevier. https://doi.org/10.1016/j.matpr.2022.02.121

Paper

Diisocyanate-Induced Dynamic Vulcanization of Difunctional Fatty Acids toward Mechanically Robust PLA Blends with Enhanced Luminescence Emission
Liu, Hongzhi, Chen, Ning, Peng, Changqing, Zhang, Shuai Zhang, Liu, Tuan, Song, Pingan, Zhong, Guolun and Liu, Hao. 2022. "Diisocyanate-Induced Dynamic Vulcanization of Difunctional Fatty Acids toward Mechanically Robust PLA Blends with Enhanced Luminescence Emission." Macromolecules. 55 (17), pp. 7695-7710. https://doi.org/10.1021/acs.macromol.2c00674

Article

One-pot sequence-selective synthesis of polylactone-containing block terpolymers based on renewable terpenoid-derived monomer and a simple organocatalyst
Xie, Hongyan, Feng, Jiabing, Yang, Xiaoxia, Zhao, Yan, Song, Pingan, Wang, Hao and Xu, Zhiguang. 2022. "One-pot sequence-selective synthesis of polylactone-containing block terpolymers based on renewable terpenoid-derived monomer and a simple organocatalyst." Journal of Polymer Science. 60 (20), pp. 2889-2898. https://doi.org/10.1002/pol.20220188

Article

Effects of Ligands in Rare Earth Complex on Properties, Functions, and Intelligent Behaviors of Polyurea–Urethane Composites
Zhou, Lu, Yang, Hongwei, Zhang, Zhen, Liu, Yue, Epaarachchi, Jayantha, Fang, Zhenggang, Fang, Liang, Lu, Chunhua and Xu, Zhongzi. 2022. "Effects of Ligands in Rare Earth Complex on Properties, Functions, and Intelligent Behaviors of Polyurea–Urethane Composites." Polymer. 14 (10), pp. 1-16. https://doi.org//10.3390/polym14102098

Article

Aqueous Self-Assembly of Bio-Based Flame Retardants for Fire-Retardant, Smoke-Suppressive, and Toughened Polylactic Acid
Liu, Linghui, Yao, Miaohong, Zhang, Huan, Zhang, Yan, Feng, Jiabeng, Fang, Zhengping and Song, Pingan. 2022. "Aqueous Self-Assembly of Bio-Based Flame Retardants for Fire-Retardant, Smoke-Suppressive, and Toughened Polylactic Acid." ACS Sustainable Chemistry and Engineering. 10 (49), p. 16313–16323. https://doi.org/10.1021/acssuschemeng.2c05298

Article

Numerical Optimisation of Structural Behaviour of Hollow Box Pulwound Fibre Composite Profiles
Alhawamdeh, Mohammad Ahmad Abdel Rahman. 2022. Numerical Optimisation of Structural Behaviour of Hollow Box Pulwound Fibre Composite Profiles. PhD by Publication Doctor of Philosophy. University of Southern Queensland. https://doi.org/10.26192/q7q8w

PhD by Publication

Polyphosphoramides as Highly Effective Fire Retardants for Polylactide: Green Syntheses, Properties and Mechanisms
Feng, Jingbing. 2022. Polyphosphoramides as Highly Effective Fire Retardants for Polylactide: Green Syntheses, Properties and Mechanisms. PhD by Publication Doctor of Philosophy. University of Southern Queensland. https://doi.org/10.26192/q7q88

PhD by Publication

Evaluating the temperature and glass fibre reinforcement effects on the damping properties of the shape memory polymers
Al Azzawi, Wessam, Epaarachchi, Jayantha A. and Leng, Jinsong. 2017. "Evaluating the temperature and glass fibre reinforcement effects on the damping properties of the shape memory polymers." 21st International Conference on Composite Materials (ICCM-21). Xi’an, China 20 - 25 Aug 2017 China.

Paper

Bioinspired, Strong, and Tough Nanostructured Poly(vinyl alcohol)/Inositol Composites: How Hydrogen-Bond Cross-Linking Works?
Xu, Xiaodong, Li, Lujuan, Seraji, Seyed Mohsen, Liu, Lei, Jiang, Zhen, Xu, Zhiguang, Li, Xin, Zhao, Sheng, Wang, Hao and Song, Pingan. 2020. "Bioinspired, Strong, and Tough Nanostructured Poly(vinyl alcohol)/Inositol Composites: How Hydrogen-Bond Cross-Linking Works?" Macromolecules. 54 (20), pp. 9510-9521. https://doi.org/10.1021/acs.macromol.1c01725

Article

Fully Biobased Surface-Functionalized Microcrystalline Cellulose via Green Self-Assembly toward Fire-Retardant, Strong, and Tough Epoxy Biocomposites
Lou, Gaobo, Ma, Zhewen, Dai, Jinfeng, Bai, Zhicheng, Fu, Shenyuan, Huo, Siqi, Qian, Lijun and Song, Pingan. 2021. "Fully Biobased Surface-Functionalized Microcrystalline Cellulose via Green Self-Assembly toward Fire-Retardant, Strong, and Tough Epoxy Biocomposites." ACS Sustainable Chemistry and Engineering. 9 (40), pp. 13595-13605. https://doi.org/10.1021/acssuschemeng.1c04718

Article

Strong, Ultrafast, Reprogrammable Hydrogel Actuators with Muscle-Mimetic Aligned Fibrous Structures
Jiang, Zhen, Seraji, Seyed Mohsen, Tan, Xiao, Zhang, Xinxing, Dinh, Toan, Mollazade, Mahdie, Rowan, Alan E, Whittaker, Andrew K, Song, Pingan and Wang, Hao. 2021. "Strong, Ultrafast, Reprogrammable Hydrogel Actuators with Muscle-Mimetic Aligned Fibrous Structures." Chemistry of Materials. 33 (19), pp. 7818-7828. https://doi.org/10.1021/acs.chemmater.1c02312

Article

Functionalizing MXene towards highly stretchable, ultratough, fatigue- and fire-resistant polymer nanocomposites
Liu, Lei, Zhu, Menghe, Shi, Yongqian, Xu, Xiaodong, Ma, Zhewen, Yu, Bin, Fu, Shenyuan, Huang, Guobo, Wang, Hao and Song, Pingan. 2021. "Functionalizing MXene towards highly stretchable, ultratough, fatigue- and fire-resistant polymer nanocomposites." Chemical Engineering Journal. 424, pp. 1-13. https://doi.org/10.1016/j.cej.2021.130338

Article

Multifunctional polyurethane sponge coatings with excellent flame retardant, antibacterial, compressible, and recyclable properties
Liu, Chengwei, Zhang, Tao, Luo, Yuxin, Wang, Yixuan, Li, Jiacheng, Ye, Ting, Guo, Ruifeng, Song, Pingan, Zhou, Jiu and Wang, Hao. 2021. "Multifunctional polyurethane sponge coatings with excellent flame retardant, antibacterial, compressible, and recyclable properties." Composites Part B: Engineering. 215, pp. 1-10. https://doi.org/10.1016/j.compositesb.2021.108785

Article

Lightweight high-performance carbon-polymer nanocomposites for electromagnetic interference shielding
Liu, Shan, Qin, Shuhao, Jiang, Yue, Song, Pingan and Wang, Hao. 2021. "Lightweight high-performance carbon-polymer nanocomposites for electromagnetic interference shielding." Composites Part A: Applied Science and Manufacturing. 145, pp. 1-30. https://doi.org/10.1016/j.compositesa.2021.106376

Article

Mechanically robust and flame-retardant polylactide composites based on molecularly-engineered polyphosphoramides
Xue, Yijiao, Ma, Zhewen, Xu, Xiaodong, Shen, Mingxia, Huang, Guobo, Bourbigot, Serge, Liu, Xiaoqing and Song, Pingan. 2021. "Mechanically robust and flame-retardant polylactide composites based on molecularly-engineered polyphosphoramides." Composites Part A: Applied Science and Manufacturing. 144, pp. 1-15. https://doi.org/10.1016/j.compositesa.2021.106317

Article

Stretchable strain sensors with dentate groove structure for enhanced sensing recoverability
Cui, Xihua, Jiang, Yue, Xu, Zhiguang, Xi, Man, Jiang, Yang, Song, Pingan, Zhao, Yan and Wang, Hao. 2021. "Stretchable strain sensors with dentate groove structure for enhanced sensing recoverability." Composites Part B: Engineering. 211, pp. 1-10. https://doi.org/10.1016/j.compositesb.2021.108641

Article

Mechanically Strong, Thermally Healable, and Recyclable Epoxy Vitrimers Enabled by ZnAl-Layer Double Hydroxides
Li, Gaoming, Zhang, Ping, Huo, Siqi, Fu, Yingke, Chen, Lin, Wu, Yeping, Zhang, Yingyu, Chen, Mao, Zhao, Xiuli and Song, Pingan. 2021. "Mechanically Strong, Thermally Healable, and Recyclable Epoxy Vitrimers Enabled by ZnAl-Layer Double Hydroxides." ACS Sustainable Chemistry and Engineering. 9 (6), pp. 2580-2590. https://doi.org/10.1021/acssuschemeng.0c08636

Article

Highly Stretchable, Ultratough, and Strong Polyesters with Improved Postcrystallization Optical Property Enabled by Dynamic Multiple Hydrogen Bonds
Sun, Shuai, Xue, Yijiao, Xu, Xiaodong, Ding, Liping, Jiang, Zhen, Meng, Linghui, Song, Pingan and Bai, Yongping. 2021. "Highly Stretchable, Ultratough, and Strong Polyesters with Improved Postcrystallization Optical Property Enabled by Dynamic Multiple Hydrogen Bonds." Macromolecules. 54 (3), pp. 1254-1266. https://doi.org/10.1021/acs.macromol.0c02628

Article

A molecularly engineered bioderived polyphosphate for enhanced flame retardant, UV-blocking and mechanical properties of poly(lactic acid)
Zhang, Yan, Jing, Jian, Liu, Ting, Xi, Liangdong, Sai, Ting, Ran, Shiya, Fang, Zhengping, Huo, Siqi and Song, Pingan. 2021. "A molecularly engineered bioderived polyphosphate for enhanced flame retardant, UV-blocking and mechanical properties of poly(lactic acid)." Chemical Engineering Journal. 411, pp. 1-13. https://doi.org/10.1016/j.cej.2021.128493

Article

A highly fire-safe and smoke-suppressive single-component epoxy resin with switchable curing temperature and rapid curing rate
Yang, Shuang, Huo, Siqi, Wang, Jun, Zhang, Bin, Wang, Jingsheng, Ran, Shiya, Fang, Zhengping, Song, Pingan and Wang, Hao. 2021. "A highly fire-safe and smoke-suppressive single-component epoxy resin with switchable curing temperature and rapid curing rate." Composites Part B: Engineering. 207, pp. 1-11. https://doi.org/10.1016/j.compositesb.2020.108601

Article

Water governs the mechanical properties of poly(vinyl alcohol)
Li, Lujuan, Xu, Xiaodong, Liu, Lei, Song, Pingan, Cao, Qianqian, Xu, Zhiguang, Fang, Zhengping and Wang, Hao. 2021. "Water governs the mechanical properties of poly(vinyl alcohol)." Polymer. 213, pp. 1-12. https://doi.org/10.1016/j.polymer.2020.123330

Article

A nano-TiO2/regenerated cellulose biohybrid enabled simultaneous improvements in strength and toughness for solid epoxy resins
Yang, Jiayao, Wang, Hengxu, Liu, Xiaohuan, Fu, Shenyuan and Song, Pingan. 2021. "A nano-TiO2/regenerated cellulose biohybrid enabled simultaneous improvements in strength and toughness for solid epoxy resins." Composites Science and Technology. 212, pp. 1-9. https://doi.org/10.1016/j.compscitech.2021.108884

Article