张勃兴
副教授级、副研究员
张勃兴
发布时间:2017-04-30        浏览次数:6467

性别:男

职称:副教授,特聘副研究员,博士生导师

招生专业:

学术博士及硕士:软物质科学与工程

邮箱:


教育与工作背景

20194-至今        华南理工大学,华南软物质科学与技术高等研究院,副教授

201611-20194    华南理工大学,华南软物质科学与技术高等研究院,博士后

201210-20163    大阪大学,应用化学专业,博士

20099-20127月   中国科学院化学研究所,材料工程专业,硕士

20059-20097月   华中科技大学,应用化学专业,学士

研究方向

(1)多孔陶瓷的制备及应用

(2) 无机纳米粒子的制备及其在有机无机杂化材料中的应用

(3) 3D打印陶瓷材料的开发与应用

(4) 陶瓷基复合材料的开发与应用

(5) 基于杜仲胶和纤维素等生物基材料的应用研究

主要业绩   

在高分子、陶瓷和生物基材料领域的专业期刊上发表SCI文章10余篇。过往工作中,制备了高度透明和可快速降解的细菌纤维素膜。利用多种新型方法开发了多孔酚醛、多孔酚醛/细菌纤维素复合材料以及多孔陶瓷等,这些材料在污水处理、过滤、催化以金属陶瓷复合材料等领域拥有广阔的应用前景。承担和参与多项国家自然科学基金以及企业合作项目。

主持基金情况

国家自然科学基金青年科学基金项目,2019年1月-2021年12月,已结题 

中央高校基本科研业务费面上项目,2018年9月-2020年8月,已结题 

中国博士后基金面上项目,2017年1月-2018年12月,已结题

发表文章列表

1.Z. Kang, H. Hu, H. Uyama,* and B. Zhang,* Porous Eucommia ulmoides Gum Monoliths Prepared via Modified Pickering High Internal Phase Emulsion Method, ACS Applied Polymer Materials 2023, 5, 6117-6123.

2.D. Zhang, H. Hu, J. Wei, X. Xu, L. Chen, X. Wu, Q. Yu, B. Zhang,* L. Wang,* Zr-doped TiO2 ceramic nanofibrous membranes for enhancing photocatalytic organic pollutants degradation and antibacterial activity, Colloids and Surfaces A: Physicochemical and Engineering Aspects 2023, 665, 131231.

3.X. Xu, H. Hu, H. Zhong, L. Wang,* B. Zhang,* Tough monolithic TiO2 materials fabricated by the sol-gel process accompanied with phase separation in solutions of SiC nanofibers and preceramic polymers, Giant 2023, 13, 100144.

4.H. Zhong, H. Hu, B. Ni, Y. Guo, Z. Luo, T. Zhao, B. Zhang,* Silica sol nanoparticles hybridized allyl phenolic resins for improving mechanical and thermal performance, Polymer 2022, 254, 12052.

5.H. Hu, X. Xu, Y. Wang, B. Zhang,* Fabricating porous monolithic ceramic materials via phase separations in solutions of poly(vinyl alcohol) and sol nanoparticles, Journal of Sol-Gel Science and Technology 2022, 103, 584-594.

6.H. Hu, H. Zhong, B. Zhang,* Fabricating porous ceramic materials via phase separations in blends of cellulose acetate and ceramic nanoparticles, Journal of the American Ceramic Society 2022, 105, 5461-5471.

7.H. Li, F. Yang, B. Zhang,* Y. Guo, W. Han, T. Zhao, W. Qiu*, Preparation and characterization of Nextel 720/alumina ceramic matrix composites via an improved prepreg process, International Journal of Applied Ceramic Technology 2022, 19, 1970-1980.

8.B. Zhang, Y. Zhang, J. Li, Y. Sun, H. Li, W. Qiu, Z. Luo,* T. Zhao,* Tough macroporous phenolic resin/bacterial cellulose composite with double-network structure fabricated by ambient pressure drying, Cellulose 2020, 27, 5029-5039.

9.Q. Guo, B. Zhang,* X. Feng, X. Yan, Z. Su, S. T. D. Cheng, K. Yue,* Controlling the periodically ordered nanostructures in ceramics: A macromolecule-guided strategy, Macromolecular Rapid Communications 2020, 41, 1-15.

10.B. Zhang, Y. Zhang, Z. Luo, W. Han, W. Qiu, T. Zhao, Monolithic silicon carbide with interconnected and hierarchical pores fabricated by reaction-induced phase separation, Journal of the American Ceramic Society 2019, 102, 3860-3869. 

11.B. Zhang, H. Yu, Y. Zhang, Z. Luo, W. Han, W. Qiu, T. Zhao, Bacterial cellulose derived monolithic titania aerogel consisting of 3D reticulate titania nanofibers, Cellulose 2018, 25, 7189-7196.

12.C. Wang, B. Zhang, Z. Luo, Y. Zhang, H. Zhou, Y. Guo, T. Zhao, Preparation and properties of a novel addition-curable phenolic resin containing boron element, Polymer for Advanced Technologies 2018, 29, 3014-3019.

13.B. Zhang, Y. Zhang, Z. Luo, W. Han, W. Qiu, T. Zhao, Hierarchically porous zirconia monolith fabricated from bacterial cellulose and preceramic polymer, ACS Omega 2018, 3, 4688-4694.

14.X. Sun, K. Wang, B. Zhang, F. Zou, G. Sun, W. Han, X. Wang, Hierarchically porous cellulose monolith prepared by combination of ice-template method and non-solvent-induced phase separation method, Chemistry Letters 2017, 46, 792-794.

15.X. Sun, K. Wang, Y. Shu, F. Zou, B. Zhang, G. Sun, H. Uyama, X. Wang, One-pot route towards active TiO2 doped hierarchically porous cellulose highly efficient photocatalysts for methylene blue degradation, Materials 2017, 10, 373-385. 

16.S. Li, F. Chen, B. Zhang, Z. Luo, H. Li, T. Zhao, Structure and improved thermal stability of phenolic resin containing silicon and boron elements, Polymer Degradation and Stability 2016, 133, 321-329. 

17.B. Zhang, J. Azuma, S. Takeno, N. Suzuki, Y. Nakazawa, H. Uyama, Improvement of the rheological properties of trans-1,4-polyisoprene from Eucommia ulmoides Oliver by tri-branched poly(ricinoleic acid), Polymer Journal 2016, 48, 821-827. 

18.B. Zhang, H. Uyama, Biomimic plant cuticle from hyperbranched poly(ricinoleic acid) and cellulose film, ACS Sustainable Chemistry & Engineering 2016, 4, 363-369. 

19.B. Zhang, J. Azuma, H. Uyama, Preparation and characterization of a transparent amorphous cellulose film, RSC Advances 2015, 5, 2900-2907.

20.B. Zhang, Z. Luo, H. Zhou, F. Liu, R. Yu, Y. Pan, Y. Wang, T. Zhao, Addition-curable phthalonitrile-functionalized novolac resin, High Performance Polymers 2012, 24, 398-404.

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