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学术论文
2024-01-24  |          【 】【打印】【关闭

   专著 

  [1] 参编《航空航天复合材料》书籍,执笔第17章“多尺度聚合物基复合材料”,  科学出版社, 2024年

  [2] 参编《碳纳米管》书籍,执笔第五章“碳纳米管的力学性能及其在复合材料中的应用”,  化学工业出版社, 2018年

   期刊论文 

  [1] Zhang TX, Wang H*, Hao YB, Liu C, Zhao Y, Zeng Y*. Optimizing interfacial interactions between functionalized graphene and chitosan for enhanced strength and toughness of composite films. Express Polymer Letters. 2023, 17: 90-103.

  [2] Zhang JA, Wang H*, Zhang TX, Sun XY, Meng Y, Ma CQ, Zhang TY, Lu N, Liu C, Zeng Y*. Vertically-oriented graphene-boron nitride skeletons using graphene oxide as inorganic adhesives for high-efficiency thermal conduction of polymeric composites with electrical insulation and compressibility. Composites Science and Technology. 2023, 233.

  [3] Wang Q, Dong YJ, Mao YJH, Zhong BW, Zeng Y*, Qu Y, Yang XZ, Zheng YX, Ji L, Sun XR, Tan HB, Shao ZB. sp2@sp3 Effect of a Nanodiamond Greenly Driving Epoxy with Superior Fire Safety and Mechanical Properties. ACS Sustainable Chemistry & Engineering. 2023, Early Access.

  [4] 张藤心, 王函, 郝亚斌, 张建岗, 孙新阳, 曾尤. 基于界面氢键结构的石墨烯/聚合物复合材料的阻尼性能. 材料研究学报. 2023, 37: 401-407.

  [5] T.Y. Zhang, H. Wang*, J.M. Tong, J.G. Zhang, X.H. Wang*, Y. Zeng*. High-efficiency ultraviolet shielding and high transparency of Ti3C2Tx MXene/poly(vinyl alcohol) nanocomposite films. Composites Communications. 2022, 33: 101235. 

  [6] 王函, 孙新阳, 张建岗, 鲁妮, 曾尤*.石墨烯/碳纤维混杂复合材料的结构功能一体化研究进展. 固体火箭技术. 2021, 44: 737.

  [7] Y.B. Hao, M.H. Fang, C. Xu, Z. Ying, H. Wang, R. Zhang*, H.M. Cheng*, Y. Zeng*. A graphene-laminated electrode with high glucose oxidase loading for highly-sensitive glucose detection. Journal of Materials Science & Technology. 2021, 66:57.

  [8] Wei SJ, Hao YB, Ying Z, Xu C, Wei QW, Xue S, Cheng HM, Ren WC, Ma LP*, Zeng Y*. Transfer-free CVD graphene for highly sensitive glucose sensors. Journal of Materials Science & Technology. 2020, 37: 71-76. 

  [9] Zhou TY, Xu C, Liu HP, Wei QW, Wang H, Zhang JG, Zhao T, Liu ZB, Zhang XF, Zeng Y, Cheng HM, Ren WC. Second Time-Scale Synthesis of High-Quality Graphite Films by Quenching for Effective Electromagnetic Interference Shielding. ACS Nano. 2020, 14: 3121-3128.

  [10] 佟钰, 李宛鸿, 董嘉, 宋学君, 王函, 曾尤. 石墨烯改性润滑油的悬浮分散特性和摩擦学性能. 材料研究学报, 2019, 33: 59-64.

  [11] Fang MH, Hao YB, Ying Z, Wang H, Cheng HM, Zeng Y*. Controllable edge modification of multi-layer graphene for improved dispersion stability and high electrical conductivity. Applied Nanoscience. 2019, 9: 469-477.

  [12] Fang MH, Xiong XH, Hao YB, Zhang TX, Wang H, Cheng HM, Zeng Y*. Preparation of highly conductive graphene-coated glass fibers by sol-gel and dip-coating method. Journal of Materials Science & Technology. 2019, 35: 1989-1995.

  [13] Wang H, Ma CQ, Zhang WM, Cheng HM, Zeng Y*. Improved Damping and High Strength of Graphene-Coated Nickel Hybrid Foams. ACS Applied Materials & Interfaces. 2019, 11 (45): 42690-42696.

  [14] Shen CX, Wang H, Zhang TX, Zeng Y*. Silica coating onto graphene for improving thermal conductivity and electrical insulation of graphene/polydimethylsiloxane nanocomposites. Journal of Materials Science & Technology. 2019, 31: 36-43. 

  [15] Ping LQ, Hou PX, Wang H, Chen ML, Zhao Y, Cong HT, Liu C, Cheng HM. Clean, fast and scalable transfer of ultrathin/patterned vertically-aligned carbon nanotube arrays. Carbon. 2018, 133: 275-282.

  [16] Li GX, Hou PX, Luan J, Li JC, Li X, Wang H, Shi C, Liu C, Cheng HM. A MnO2 nanosheet single-wall carbon nanotube hybrid fiber for wearable solid-state supercapacitors. Carbon. 2018, 140: 634-643.

  [17] Wang H, Xie GY, Yang C, Zheng YX, Ying Z, Ren WC, Zeng Y*. Enhanced Toughness of Multilayer Graphene-Filled Poly(vinyl chloride) Composites Prepared Using Melt-Mixing Method. Polymer Composites. 2017, 38: 138-146.

  [18] Wang H, Xie GY, Fang MH, Ying Z, Tong Y, Zeng Y*. Mechanical reinforcement of graphene/poly(vinyl chloride) composites prepared by combining the in-situ suspension polymerization and melt-mixing methods. Composites Part B: Engineering. 2017, 113: 278-284.

  [19] Xiong XH, Zeng Y*, Ren R, Liu SY, Lu SW, Chen P. Preparation and thermal properties of soluble poly(phthalazinone ether sulfone ketone) composites reinforced with multi-walled carbon nanotube buckypaper. Composites Part A: Applied Science and Manufacturing. 2016, 89: 2-9.

  [20] 曾尤,王函,成会明. 石墨烯/聚合物复合材料的研究进展及其应用前景. 新型炭材料. 2016, 31: 555-567.

  [21] R. Ren, X. H. Xiong*, X. H. Ma, S. Y. Liu, J. Wang, P. Chen, Y. Zeng. Isothermal curing kinetics and mechanism of DGEBA epoxy resin with Part phthalide-containing aromatic diamine. Thermochimica ACTA. 2016, 623: 15-21.

  [22] H. Wang, G. Y. Xie, Z. Ying, Y. Tong, Y. Zeng*. Mechanical Properties of Multi-layer Graphene Filled Poly(vinyl chloride) Composite Films. Journal of Materials Science and Technology, 2015, 31: 340-344.

  [23] Y. Zeng*, G. X. Lu, H. Wang, J. H. Du, Z. Ying, C. Liu. Positive Temperature Coefficient Thermistors Based on Carbon Nanotube/Polymer Composites. Scientific Reports, 2014, 4: 6684-1-7.

  [24] H. Wang, G. Y. Xie, Z. G. Zhu, Z. Ying, Y. Zeng*. Enhanced Tribological Performance of the Multi-layer Graphene Filled Poly(vinyl chloride) Composites. Composites: Part A, 2014, 67: 268-273.

  [25] 曾尤*, 王函. 纳米炭/环氧树脂复合材料黏弹阻尼性能. 科学通报, 2014, 59(33): 3232-3239.

  [26] Y. Zeng*, L. J. Zhao, W. Wu, G. Lu, F. Xu, Y. Tong, W. Liu, J. Du. Enhanced Adsorption of Malachite Green onto Carbon Nanotube/Polyaniline Composites. Journal of Applied Polymer Science, 2013, 127(4): 2475-2482

  [27] 曾尤*, 刘鹏飞, 赵龙, 杜金红, 刘畅. 碳纳米管导电网络结构对复合材料拉伸变形的响应性. 新型炭材料, 2013, 28(2): 88-93

  [28] X. Wang*, Y. Wan, Y. Zeng, Y. Gu. Investigation of Benzimidazole Compound as a Novel Corrosion Inhibitor for Mild Steel in Hydrochloric Acid Solution. International Journal of Eectrochemical Science, 2012, 7: 2403-2415.

  [29] Y. Zeng*, H. S. Liu, J. Chen, H. Y. Ge. Effect of Strain on the Electrical Resistance of Carbon Nanotubes/Silicone Rubber Composite. Journal of Wuhan University of Technology-Materials Science Edition, 2011, 26(5): 812-816.

  [30] R. K. Srivastava, V. S. M. Vemuru, Y. Zeng, R. Vajtai, S. Nagarajaiah, P. M. Ajayan, A. Srivastava*. The Strain Sensing and Thermal-Mechanical Behavior of Flexible Multi-walled Carbon Nanotube/Polystyrene Composite Films. Carbon, 2011, 49: 3928-3936.

  [31]  Y. Zeng*, L. J. Zhao, Y. Zhen, F. X. Shi, Y. Tong. Preparation and Photovoltaic Properties of Flexible Dye-sensitized Solar Cells. Advanced Materials Research, 2011, 306/307: 112-115.

  [32]  J. H. Du*, L. Zhao, Y Zeng*, L. L. Zhang, F. Li, P. F. Liu, C. Liu. Comparison of Electrical Properties between Multi-walled Carbon Nanotube and Graphene Nanosheet/High Density Polyethylene Composites with a Segregated Network Structure. Carbon, 2011, 49(4): 1094-1100.

  [33] Y. Zeng*, L. Ci, B. Carey, R. Vajtai, P. M. Ajayan*. Design and Reinforcement: Vertically Aligned Carbon Nanotube-based Sandwich Composites, ACS Nano, 2010, 4(10): 6798-6804.

  [34] Y. Zeng, P. F. Liu, J. H. Du, L. Zhao, H. M. Cheng*. Increasing the Electrical Conductivity of Carbon Nanotube/Polymer Composites by Using Weak Nanotube–Polymer Interactions, Carbon, 2010, 48: 3551-3558.

  [35] 曾尤*, 赵龙, 刘鹏飞, 杜金红, 刘畅. 基于弱相互作用的石墨化CNT/PMMA复合材料的输运性能. 高等学校化学学报, 2010, 61(3): 635-638.

    会议论文  

  [1] Y. Zeng*, H. Wang, Z. Ying, M. Fang, H. M. Cheng. Enhanced viscoelastic properties of hybrid graphene-nickel reinforced epoxy composites. The International Workshop on Engineering and Applications of Nanocarbon Materials, Jan. 31-Feb.3, Jinan, 2015(邀请报告)

  [2] Y. Zeng*. Tribological properties of multi-layer graphene filled poly(vinyl chloride) composites. The 11th China-Japan Joint Conference on Composite Materials. Oct. 18-23, Chongqing, 2014(邀请报告、分会主席co-chair)

  [3] Y. Zeng*. Viscoelasticity of graphene/nickel foam filled epoxy composite. The 2nd International Symposium on Materials Physics, May 30-June 1, Beijing, 2014 (邀请报告)

  [4] Y. Zeng*, H. Wang, C. Yang, Z. Ying, W. C. Ren, H. M. Cheng. Viscoelastic behavior of graphene foam reinforced composites. The 3rd International Conference on Nanomechanics and Nanocomposites, May 22-16, Hong Kong, 2014(邀请报告)

  [5] Y. Zeng*, H Wang, C. Yang, Z. Ying, W. C. Ren, H. M. Cheng. Mechanical and electrical properties of multi-layer graphene filled poly(vinyl chloride) Composites. The World Conference on Carbon (Carbon 2014), June 29-July 4, Jeju, Korea, 2014

  [6] 王函, 曾尤*. 石墨烯/泡沫镍/环氧树脂复合材料的粘弹阻尼性能研究. 中国材料大会201474-8日,成都,2014

  [7] Y. Zeng*, J. H. Du, H. M. Cheng*. Weak nanotue-polymer interactions for increasing electrical conductivity of carbon nanotube/polymer composites. The 2nd International Conference on Nanomechanics and Nanocomposite. Oct. 10-13, 57, Beijing, 2010 (邀请报告)

  [8] 赵丽佳, 甄影, 陈曦, 时方晓, 曾尤*.“碳纳米管和石墨烯透明导电膜为基的柔性染料敏化太阳能电池. 2010年中国可再生能源科技发展大会, 2010.12, 1975-1977, 北京, 2010

  [9] Y. Zeng*, L. J. Zhao, Y. Zhen, F. X. Shi, Y. Tong. Preparation and photovoltaic properties of flexible dye-sensitized solar cells. 1st International Congress on Advanced Materials, May 13-16, 112-115, Ji’nan, 2011

纳米炭复合材料研究团队

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