55.王淑娟,李银环,吕东梅,丁书江,张志成. 新时代背景下高校化学类专业人才培养方案修订,2023新时代高校化学化工教学改革与创新研讨会论文集.
54.李宸辉,王璐,刘晓骏,吴治诚,井新利,樊威,张承双,王淑娟*. 基于聚二甲基硅氧烷弹性体的摩擦电纳米发电机的研究进展. 2024,高分子材料科学与工程.
53.ShuJuan Wang, Lu Wang, HongZhe Su, ZhiCheng Wu, QiaoGen Zhang, Wei Fan, XinLi Jing. Room-temperature Self-healing and Recyclable PDMS Elastomers with Superior Mechanical Properties for Triboelectric Nanogenerators. 2024, Chinese Journal of Polymer Science, Accepted.
52.Wei Fan,* Tong Liu, Fan Wu, Shujuan Wang, Shengbo Ge, Yunhong Li, Jinlin Liu, Haoran Ye, Ruixin Lei, Chan Wang, Qiuling Che, and Yi Li*.An Antisweat Interference and Highly Sensitive Temperature Sensor Based on Poly(3,4- ethylenedioxythiophene)−Poly(styrenesulfo nate) Fiber Coated with Polyurethane/ Graphene for Real-Time Monitoring of Body Temperature.ACS Nano,2023,3c04246.
51.Yao Lu,Tao Liu , Shujuan Wang*,Yan Sun,Yanfeng Zhang, Jingyu Kang, Bo Li, Yuan Gao, Xingzhong Gao, Wei Fan*.A mild, environmental, and low-destructive recycling strategy for the 3D multiaxial braided composites cured by the vacuum-assisted resin transformed molding process.Composites Communications,2022,35,101354.
50.Shujuan Wang,Lu Wang,Wen Song, Chenhui Li, Wei Fan, Cheng Bian, Chengshuang Zhang, Xinli Jing*.The aryl-boron phenolic resins with super ablation properties for resin-transfer molding process of three-dimensional fabric.Polymer Degradation and Stability,2023,208,110252.
49.Wei Fan, Yao Zhang, Yanli Sun, Shujuan Wang, Cong Zhang, Xichen Yu, Weiting Wang, Kai Dong*. Durable antibacterial and temperature regulated core-spun yarns for textile health and comfort applications. Chemical Engineering Journal, 2023, 455,140917.
48. Wei Fan*, Cong Zhang, Yang Liu, Shujuan Wang, Kai Dong, Yi Li, Fan Wu, Junhao Liang, Chunlan Wang, and Yingying Zhang*.An ultra-thin piezoelectric nanogenerator with breathable,superhydrophobic, and antibacterial properties for human motion monitoring.Nano Research,2022,s12274.
47.Jingyu Kang, Tao Liu a, Yao Lu, Linlin Lu, Kai Dong b, Shujuan Wang, Bo Li, Ying Yao, Yuan Bai, Wei Fan*.Polyvinylidene fluoride piezoelectric yarn for real-time damage monitoring of advanced 3D textile composites. Composites Part B,2022,245,110229.
46.Xichen Yu, Wei Fan*, Yang Liu, Kai Dong, Shujuan Wang, Weichun Chen, Yao Zhang, Linlin Lu, Hongxia Liu, and Yingying Zhang*. A one-step fabricated sheath-core stretchable fiber based on liquid metal with superior electric conductivity for wearable sensors and heaters. Advanced Materials Technologies, 2022, 10.1002/admt.202101618.
45.Chenyang Song, Wei Fan*, Tao Liu, Shujuan Wang, Wen Song, Xingzhong Gao. A review on three-dimensional stitched composites and their research perspectives. Composites Part A: Applied Science and Manufacturing, 2022, 153:106730.
44.Shujuan Wang, Lu Wang, Ya'nan Wang, Yuefeng Li, Wei Fan, Xinli Jing*. Synthesis of boron-doped phenolic porous carbon as efficient catalyst for the dehydration of fructose into 5-hydroxymethylfurfural, Industrial & Engineering Chemistry Research, 2022, 61, 12, 4222-4234.
43.Shujuan Wang, Tao Zhang, Xiaolin Zhang, Shengbo Ge, Wei Fan*. Development of 3D needled composite from denim waste and polypropylene fibers for structural applications, Construction and Building Materials, 2022, 314: 125583.
42.Shujuan Wang, Lu Wang, Hongzhe Su, Chenhui Li, Wei Fan, Xinli Jing*. Enhanced thermal resistance and ablation properties of ethylene-propylene-diene monomer rubber with boron-containing phenolic resins, Reactive and Functional Polymers, 2022, 170: 105136.
41.Shujuan Wang, Lu Wang, Bin Wang, Hongzhe Su, Wei Fan, Xinli Jing*. Facile preparation of recyclable cyclic polyolefin/polystyrene vitrimers with low dielectric loss based on semi-interpenetrating polymer networks for high-frequency copper-clad laminates, Polymer, 2021, 124214.
40.Xiaoting Zhang, Yuhong Zhao, Shujuan Wang, Xinli Jing*. Cross-linked polymers based on B–O bonds: synthesis, structure and properties, Materials Chemistry Frontiers, 2021, 5, 5534.
39.Cong Zhang, Wei Fan*, Shujuan Wang, Qi Wang, Yifan Zhang, Kai Dong. Recent progress of wearable piezoelectric nanogenerators, ACS Applied Electronic Materials, 2021, 3, 2449-2467.
38.Xiaolong Xing, Ping Zhang, Yuhong Zhao, Fei Ma, Xiaoting Zhang, Fang Xue, Shujuan Wang, Xinli Jing*. Pyrolysis mechanism of phenylboronic acid modified phenolic resin, Polymer Degradation and Stability, 2021, 191, 109672.
37.Shujuan Wang, Bin Wang, Xiaoting Zhang, Lu Wang, Wei Fan, Hongyan Li, Cheng Bian, Xinli Jing*. Fully recyclable and reprocessable polystyrene-based vitrimers with improved thermal stability and mechanical properties through nitrogen-coordinating cyclic boronic ester bonds, Applied Surface Science, 2021, 570: 151157.
36.Huixia Tian, Wei Fan, Shengbo Ge, Changlei Xia, Yang Liu, Honghong Wang, Shujuan Wang*. Nanofiber–sheathed structure for enhancing interfacial properties of basalt fiber-reinforced composites, Composites Communications, 2021, 23: 100589.
35.Wenzhe Zhao, Le An*, Shujuan Wang. Recyclable high-performance epoxy-anhydride resins with DMP-30 as the catalyst of transesterification reactions, Polymers, 2021, 13, 296.
34.Qiang Zhang, Shujuan Wang, Bin Rao, Xingxing Chen, Li Ma, Chenhui Cui, Qianyun Zhong, Zhen Li, Yilong Cheng, Yanfeng Zhang*. Hindered urea bonds for dynamic polymers: An overview, Reactive and Functional Polymers, 2021, 159: 104807.
33.Xiaoting Zhang#, Shujuan Wang#, Zikang Jiang, Yu Li, Xinli Jing*. Boronic ester based vitrimers with enhanced stability via internal boron-nitrogen coordination, Journal of the American Chemical Society, 2020, 142: 21852-21860.
32.Shujuan Wang*, Yingfeng Yang, Hanze Ying, Xinli Jing, Bin Wang, Yanfeng Zhang, Jianjun Cheng, Recyclable, self-healable, and highly malleable poly(urethane-urea)s with improved thermal and mechanical performances, ACS Applied Materials & Interfaces, 2020, 12: 35403-35414.
31.苏宏哲,王斌,王璐,井新利,边城,王淑娟*. 基于动态共价键的聚硅氧烷的制备、性能和应用,高分子材料科学与工程(EI),2021,37(9): 165-174.
30.刘兆年,王镇,辜朝晖,王淑娟*. 水滑石及其在聚氯乙烯中的应用进展,塑料,2020,已录用.
29.Shujuan Wang*, Yingfeng Yang, Hanze Ying, Xinli Jing, Bin Wang, Yanfeng Zhang, Jianjun Cheng, Recyclable, self-healable, and highly malleable poly(urethane-urea)s with improved thermal and mechanical performances, ACS Applied Materials & Interfaces, 2020, On line. DOI: 10.1021/acsami.0c07553.
28.赵玉虹,边城,王斌,王淑娟*. 聚甲基丙烯酰亚胺泡沫塑料的制备和发展现状,应用化工,2020,49(12):107-112.
27.Yuefeng Li, Zhimao Yang, Baoqiang Hao, Shujuan Wang*, Canbin Ouyang, Aocheng Cao, Synthesis and nonlinear optical properties of novel conjugated small molecules based on coumarin donor, Journal of Materials Science: Materials in Electronics, 2019,30: 19977–19983.
26.Zhang Ping, Shujuan Wang, Zhang Xiaoting, Jing Xinli*, The effect of free dihydroxydiphenylmethanes on the thermal stability of novolac resin, Polymer Degradation and Stability, 2019. 168: 108946.
25.陈兴幸, 钟倩云, 王淑娟, 吴宥伸, 谭继东, 雷恒鑫, 黄绍永, 张彦峰*. 动态共价键高分子材料的研究进展. 高分子学报, 2019, (50):469-484.
24.Wei Fan, Huixia Tian, Honghong Wang, Tao Zhang, Xue Yang, Yang Yua, Xue Meng, Xichen Yua, Linjia Yuan, Bugao Xu, Shujuan Wang*, Enhanced interfacial adhesion of aramid fiber III reinforced epoxy composites via low temperature plasma treatment, Polymer Testing, 2018, 72, 147-156.
23.Shujuan Wang, Xiaolong Xing, Xiaoting Zhang, Xiao Wang, Xinli Jing*, Room-temperature fully recyclable carbon fibre reinforced phenolic composites through dynamic covalent boronic ester bonds, Journal of Materials Chemistry A, 2018, 6: 10868-10878.
22.Shujuan Wang, Yuefeng Li, Xiaolong Xing, Xinli Jing*, Low-temperature synthesis of high-purity boron carbide via an aromatic polymer precursor, Journal of Materials Research, 2018, 33(11): 1659-1670.
21.Shujuan Wang, Xiaolong Xing, Jian Li, Xinli Jing*, Synthesis and characterization of poly (dihydroxybiphenyl borate) with high char yield for high-performance thermosetting resins, Applied Surface Science, 2018, 428: 912-923.
20.Shujuan Wang, Xiaolong Xing, Yanan Wang, Wen Wang, Xinli Jing*, Influence of Poly(dihydroxybiphenyl borate) on the curing behaviour and thermal pyrolysis mechanism of phenolic resin, Polymer Degradation and Stability, 2017, 144:378-391
19.Yanan Wang, Xiaoru Niu, Xiaolong Xing, Shujuan Wang*, Xinli Jing, Curing behaviour and properties of a novel benzoxazine resin via catalysis of 2-phenyl-1,3,2-benzodioxaborole, Reactive and Functional Polymers, 2017, 117: 60-69
18.Shujuan Wang, Xinli Jing, Yundong Meng, Qinxiang Jia*, Synthesis and Crystal Structure of a Two-hydroxyphenyl Adamantane-type Epoxy Resin, Chinese Journal of Structural Chemistry, 2017, 36(3):396-400
17.Shujuan Wang, Xiao Wang, Beibei Jia, Xinli Jing*, Fabrication and characterization of poly (bisphenol A borate) with high thermal stability, Applied Surface Science, 2017, 392: 481-491.
16.Cheng Bian, Yu Li, Shujuan Wang, Xinli Jing*, Initial reaction mechanism between HO· and bisphenol-F: Conformational dependence and the role of nonbond interactions, International Journal of Quantum Chemistry, 2017, 117: e25342.
15.Cheng Bian, Shujuan Wang*, Yuhong Liu, Kehe Su, Xinli Jing, Role of non-bond interactions in the glass transition of novolac-type phenolic resin: a molecular dynamics study, Industrial & Engineering Chemistry Research, 2016, 55(35): 9440-9451.
14.Shujuan Wang, Cheng Bian, Beibei Jia, Yanan Wang, Xinli Jing*, Structure and thermal pyrolysis mechanism of poly(resorcinol borate) with high char yield, Polymer Degradation and Stability, 2016, 130: 328-337.
13.Cheng Bian, Shujuan Wang, Yuhong Liu, Xinli Jing*, Thermal stability of phenolic resin: new insights based on bond dissociation energy and reactivity of functional groups, RSC Advances, 2016, 6(60): 55007-55016.
12.Yuhu Zhong, Xinli Jing, Shujuan Wang, Qin Xiang Jia*, Behavior investigation of phenolic hydroxyl groups during the pyrolysis of cured phenolic resin via molecular dynamics simulation, Polymer Degradation and Stability, 2016, 125:97-104.
11.Cheng Bian, Yong Wang, Shujuan Wang, Yuhu Zhong, Yun Liu, Xinli Jing*, Influence of borate structure on the thermal stability of boron-containing phenolic resins: a DFT study, Polymer Degradation and Stability, 2015, 119: 190-197.
10.Shujuan Wang, Qinxiang Jia, Yuhong Liu, Xinli Jing*, An investigation on the effect of phenylboronic acid on the processibilities and thermal properties of bis-benzoxazine resins, Reactive and Functional Polymers, 2015, 93(8): 111-119.
9.Shujuan Wang, Yong Wang, Cheng Bian, Yuhu Zhong, Xinli Jing*, The thermal stability and pyrolysis mechanism of boron-containing phenolic resins: The effect of phenol borates on the char formation, Applied Surface Science, 2015, 331: 519-529.
8.Yong Wang, Shujuan Wang, Cheng Bian, Yuhong Zhong, Xinli Jing*, Effect of chemical structure and cross-link density on the heat resistance of phenolic resin, Polymer Degradation and Stability, 2015, 111: 239-246.
7.Zhifeng Huang, Xiaoyang Ma, Zemin Qiao, Shujuan Wang, Xinli Jing*, Pendulum hardness of polyurethane coatings during curing, Pigment & Resin Technology, 2014, 43(5): 271-276.
6.Shujuan Wang, Xinli Jing*, Yong Wang, Jingjing Si. Synthesis and characterization of novel phenolic resins containing aryl-boron backbone and their utilization in polymeric composites with improved thermal and mechanical properties, Polymer for Advanced Technology, 2014, 25(2): 152-159.
5.Shujuan Wang, Xinli Jing*, Yong Wang, Jingjing Si. High char yield of aryl boroncontaining phenolic resins: The effect of phenylboronic acid on the thermal stability and carbonization of phenolic resins, Polymer Degradation and Stability, 2014, 99(1): 1-11.
4.Jingjing Si, Jian Li, Shujuan Wang, Yu Li, Xinli Jing*, Enhanced thermal resistance of phenolic resin composites at low loading of graphene oxide, Composites Part A: Applied Science and Manufacturing, 2013, 54: 166–172
3.Jingjing Si, Peijun Xu, Wei He, Shujuan Wang, Xinli Jing*, Bis-benzoxazine resins with high char yield and toughness modified by hyperbranched poly(resorcinol borate), Composite Part A: Applied Science and Manufacturing, 2012, 43(12): 2249-2255.
2.王淑娟,马晓阳,井新利,汤汉良. 低温快固化丙烯酸聚氨酯涂料的发展现状.涂料工业,2011,41(12):67-70.
1.王淑娟,汤汉良,罗辉. 水性汽车金属闪光底色漆的制备及性能. 现代涂料与涂装, 2011, 14(12): 12-20.