楚宗霖

教授

基本情况

联系方式:zchu@hnu.edu.cn

教育及工作经历

2019.10-至今,伟德官网化学化工公司

2016.01-2019.09,(以色列)魏茨曼科学研究所(合作导师: Rafal Klajn教授)

2012.10-2015.12,(瑞士)苏黎世大学(合作导师: Stefan Seeger教授)

2011.09-2012.09,(瑞士)苏黎世联邦理工公司(合作导师: Yoko Yamakoshi教授)

2006.09-2011.07,中国科公司成都有机化学研究所(导师:冯玉军教授),应用化学工学博士

2002.09-2006.07,伟德官网化学化工公司,应用化学理学学士

科研项目

[1]伟德官网高层次人才启动项目,200万元,2019;

[2]湖南省高层次人才项目,2021;

[3]新型三维超疏油/超亲水油水分离材料的构建与性能研究,国家自然科学基金面上项目, 60万元, 2022.01—2025.12,主持;

[4]三维微纳结构超浸润高效油水分离材料,长沙市自然科学基金, 10万元, 2020.07—2022.06,主持;

[5]表面超疏水改性砂的表征与性能测试,中石化横向合作项目, 43.26万元, 2020.09—2021.07,主持;

[6]水溶性热固树脂固化剂分子结构及性能测试,中石化横向合作项目, 20.19万元, 2020.09—2021.07,主持;

[7]油基钻井液用固相清洁剂分析测试,中石化横向合作项目, 12万元, 2021.09—2022.07,主持;

[8]复合驱油体系中纳米材料结构设计与增效机制研究,中石化横向合作项目, 32.45万元, 2021.11—2022.11,主持;

学术成果

科研著作:

[1]Yujun Feng, Zonglin Chu, Cécile A. Dreiss, Stimulus-responsive wormlike micelles, In “Wormlike micelles: advances in systems, characterisation and applications” Y. Feng, C. A. Dreiss, Ed. Soft Matter Series No. 6, Royal Society of Chemistry, 2017.

[2]Yujun Feng, Zonglin Chu, Cécile A. Dreiss, Smart wormlike micelles: design, characteristics and applications, Berlin Springer Verlag, 2015.

发表论文

[3]Haikang Huang, Jing Shi, Binlin Pan, Hengchang Liu, Deqi Wang, Yifeng Gao, Fan Min, Yixuan Li, Wenting Zhou, Zonglin Chu,*, Intelligent device composed of two membranes with opposite wettability for identification and purification of both water and oil phases from oil-in-water and water-in-oil emulsions, Sep. Purif. Technol., 2023, 312, 123406.

[4]Deqi Wang, Yifeng Gao, Shoujian Gao, Haikang Huang, Fan Min, Yixuan Li, Stefan Seeger, Jian Jin, Zonglin Chu,* Antifouling superhydrophilic porous glass membrane based on sulfobetaine prepared by thiol-ene click chemistry for high-efficiency oil/ water separation, J. Membr. Sci., 2023, 670, 121336.

[5]Deqi Wang, Haikang Huang, Yongli Lv, Kai Chen, Yanlei Zhong, Peisheng Chen, Fan Min, Ganhua Xie, Zhichao Dong, Zonglin Chu*, A Gemini-Type superwettable separator for consecutive purification of water and oil Phases from oil-water mixtures and emulsions, ChemSusChem, 2023, 16, e202201932.

[6]Haikang Huang, Deqi Wang, Jian Zhu, Stefan Seeger,* Zonglin Chu*, Sand-Based economical micro/nanocomposite materials for diverse applications, ACS Appl. Mater. Interfaces, 2022, 14, 43656−43665.

[7]Tong Bian, Andrea Gardin, Julius Gemen, Lothar Houben, Claudio Perego, Byeongdu Lee, Nadav Elad, Zonglin Chu, Giovanni M. Pavan, Rafal Klajn*, Electrostatic co-assembly of nanoparticles with oppositely charged small molecules into static and dynamic superstructures, Nature Chemistry, 2021, 13, 940–949.

[8]Tong Bian, Zonglin Chu, Rafal Klajn*, The many ways to assemble nanoparticles using light, Adv. Mater., 2020, 32, 1905866.

[9]Zonglin Chu* (co-corresponding author), Rafal Klajn*, Polysilsesquioxane nanowire networks as an “artificial solvent” for reversible operation of photochromic molecules, Nano Letters, 2019, 19, 7106–7111.

[10]26. Zonglin Chu, Yanxiao Han, Tong Bian, Soumen De, Petr Král, Rafal Klajn, Supramolecular control of azobenzene switching on nanoparticles. J. Am. Chem. Soc., 2019, 141, 1949–1960.

[11]Ji Wang, Xinjie Luo, Zonglin Chu*, Yujun Feng*, Effect of residual chemicals on wormlike micelles assembled from a C22-tailed cationic surfactant, J. Colloid Interface Sci., 2019, 553, 91−98.

[12]Zonglin Chu, Yanxiao Han, Petr Král, Rafal Klajn, Precipitation on nanoparticles: attractive intermolecular interactions stabilize specific ligand ratios on the surfaces of nanoparticles, Angew. Chem. Int. Ed., 2018, 57, 7023‒7027.

[13]Dipak Samanta, Julius Gemen, Zonglin Chu, Yael Diskin-Posner, Linda J. W. Shimon, Rafal Klajn, Reversible photoswitching of encapsulated azobenzenes in water, Proc. Natl. Acad. Sci. USA, 2018, 115, 9379‒9384.

[14]Zonglin Chu* (co-corresponding author), Sandro Olveira, Stefan Seeger*, A facile sustainable strategy towards the preparation of silicone nanofilaments and their use as antiwetting coatings, ChemistrySelect, 2017, 2, 5463‒5468.

[15]Yujun Feng, Zonglin Chu* (corresponding author), Correlating surface activity with structural and environmental parameters for alkylamidosulfobetaine surfactants, Colloid Poly. Sci., 2016, 294, 957‒963.

[16]Zonglin Chu, Stefan Seeger, Multifunctional Hybrid porous micro-/nanocomposite materials. Adv. Mater., 2015, 27, 7775‒7781.

[17]Zonglin Chu, Yujun Feng, Stefan Seeger, Oil/water separation with selective superantiwetting/superwetting surface materials, Angew. Chem. Int. Ed., 2015, 54, 2328‒2838.

[18]Yujun Feng, Zonglin Chu* (corresponding author), pH-Tunable wormlike micelles based on an ultra-long-chain “pseudo” Gemini surfactant, Soft Matter, 2015, 11, 4614‒4620.

[19]Zonglin Chu, Stefan Seeger, Robust superhydrophobic wood obtained by spraying silicone nanoparticles, RSC Adv., 2015, 5, 21999–22004.

[20]Rakesh Kumar, Shivaprakash N. Ramakrihna, Vikrant V. Naik, Zonglin Chu, Michael E. Drew, Nicholas D. Spencer, Yoko Yamakoshi, Versatile method for AFM-tip functionalization with biomolecules: fishing a ligand by means of an in situ click reaction, Nanoscale, 2015, 7, 6599−6606.

[21]Zonglin Chu, Stefan Seeger, Superamphiphobic surfaces, Chem. Soc. Rev., 2014, 43, 2784−2798.

[22]Zonglin Chu, Yujun Feng, Vegetable-derived long-chain surfactants synthesized via a green route, ACS Sustainable Chem. Eng., 2013, 1, 75−79.

[23]Zonglin Chu, Cécile A. Dreiss, Yujun Feng, Smart wormlike micelles, Chem. Soc. Rev., 2013, 42, 7174−7203 (invited contribution for the 2013 themed issue of smart materials, highlighted as back cover).

[24]Yongmin Zhang, Zonglin Chu, Cécile A. Dreiss, Yuejiao Wang, Chenhong Fei, Yujun Feng, Smart wormlike micelles switched by CO2 and air, Soft Mater, 2013, 9, 6217−6221.

[25]Yongmin Zhang, Yixiu Han, Zonglin Chu, Shuai He, Jichao Zhang, Yujun Feng, Thermally induced structural transition from fluids to hydrogels with pH-switchable anionic wormlike micelles, J. Colloid Interface Sci., 2013, 394, 319−328.

[26]Yongmin Zhang, Yujun Feng, Jiyu Wang, Shuai He, Zanru Guo, Zonglin Chu, Cécile A. Dreiss, CO2-switchable wormlike micelles, Chem. Commun., 2013, 49, 4902−4904.

[27]Zonglin Chu, Yujun Feng, Empirical correlation between Krafft temperature and tail length for amidosulfobetaine surfactants in the presence of inorganic salt, Langmuir, 2012, 28, 1175−1181.

[28]Zonglin Chu, Yujun Feng, Shear banding transition of wormlike micelles formed by a C22-tailed cationic surfactant, Acta Chim. Sinica, 2012, 70, 1551−1554.

[29]Yixiu Han, Zonglin Chu, Huanquan Sun, Zhengquan Li, Yujun Feng, “Green” anionic wormlike micelles Induced by choline, RSC Advance, 2012, 2, 3396−3402.

[30]Zonglin Chu, Yujun Feng, Huanquan Sun, Zhenquan Li, Xinwang Song, Yugui Han, Hongyan Wang, Aging mechanism of unsaturated long-chain amidosulfobetaine worm fluids at high temperature, Soft Matter, 2011, 7, 4485−4489.

[31]Zonglin Chu, Yujun Feng, Thermo-switchable surfactant gel, Chem. Commun., 2011, 47, 7191−7193.

[32]Zonglin Chu, Yujun Feng, pH-switchable wormlike micelles, Chem. Commun., 2010, 46, 9028−9030.

[33]Zonglin Chu, Yujun Feng, Xin Su, Yixiu Han, Wormlike micelles and solution properties of a C22-tailed amidosulfobetaine surfactant, Langmuir, 2010, 26, 7783−7791.

[34]Zonglin Chu, Yujun Feng, Amidosulfobetaine surfactant gels with shear banding transitions, Soft Matter, 2010, 6, 6065−6067.

[35]Zonglin Chu, Yujun Feng, A facile route towards the preparation of ultra-long-chain amidosulfobetaine surfactants, Synlett, 2009, 2655−2658.

发明专利

[1]Zonglin Chu, Stefan Seeger, Materials for the treatment of fluids or fluid Mixtures, PCT Patent, WO/2017/037120.

[2]Sandro Oliver, Stefan Seeger, Zonglin Chu, Facile means towards the fabrication of silicone nanoparticles and their applications as superhydrophobic coatings, PCT Patent, WO 2016/001377.

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