程昱川 研究員 博士生導師
Tel: +86-574-8668 5162
Fax: +86-574-8668 5163
E-mail: yccheng@nimte.ac.cn
主要簡曆:
2006年畢業于吉林大學(xué)物理化學(xué)專業,獲理學(xué)博士學(xué)位。
同年8月,進(jìn)入中國(guó)科學(xué)院上海有機化學(xué)研究所從事(shì)博士後(hòu)研究。
出站至今,在中科院甯波材料技術與工程研究所功能(néng)材料與納米器件事(shì)業部工作。
先後(hòu)主持國(guó)家、省市各級自然科學(xué)基金、重大專項及企業合作項目,作爲主要科研人員參與973子課題、中科院創新型方向(xiàng)性項目、浙江省自然科學(xué)基金重大項目等的研究。在J. Am. Chem. Soc.,NPG Asia Mater.,ACS Appl. Mater. Interface,Adv. Opt. Mater.,Chem 等學(xué)術期刊發(fā)表研究論文50餘篇,發(fā)明專利16項已獲授權,相關研究成(chéng)果獲2010年度甯波市科技進(jìn)步二等獎。現擔任Accounts. Chem. Res.,ACS Appl. Mater. Interface,Small,Appl. Phys. Lett.,Soft Matter等期刊審稿人。2009年入選浙江省“151人才工程”,2011年入選甯波市“領軍拔尖人才培養工程”,2013年入選中科院青年創新促進(jìn)會會員。
主要研究方向(xiàng):
1)4D打印材料與技術研究
2)智能(néng)柔性材料的設計、組裝及器件
3)表面(miàn)等離激元超靈敏傳感器構築及其在環境、食品安全、能(néng)源領域的應用
近期發(fā)表的論文:
30. Wang, Y. T.; Chu, C. Y.; Duan, C. Q.; Dong, J. J.; Chen, H.; Ying, S. T.; Guo, J. J.; Xu, G. J.; Cheng, Y. C.; Sun, A. H. Thermal insulation of 3D printed complex and miniaturized SiO2 aerogels at medium-high temperatures, J. Non-Cryst. Solids, 2023, 608, 12251.
29. Shao, Y. C.; Long, F.; Zhao, Z. H.; Fang, M. Q.; Jing, H. L.; Guo, J. J.; Shi, X. L.; Sun, A. H.; Xu, G. J.; Cheng, Y. C. 4D printing Light-Driven soft actuators based on Liquid-Vapor phase transition composites with inherent sensing capability, Chem. Eng. J., 2023, 454, 140271.
28. Zhang, D. W.; Chu, C. Y.; Ma, S. W.; Wang, Y. T.; Duan, C. Q.; Guo, J. J.; Shi, X. L.; Xu, G. J.; Cheng, Y. C.; Sun, A. H. A novel method to avoid the sintering shrinkage of Al2O3-Cr cermets formed by direct ink writing, J. Alloy. Compd., 2023, 931, 167632.
27. Long, F.; Shao, Y. C.; Zhao, Z. H.; Fang, M. Q.; Zhang, Z. Y.; Guo, J. J.; Sun, A. H.; Ren, Y.; Cheng, Y. C.; Xu, G. J. Printable multi-stage variable stiffness material enabled by low melting point particle additives, J. Mater. Chem. C, 2023, 11 (4), 1285-1297.
26. Nie, W. Y.; Lei, Y.; Zhang, Y. F.; Gao, Q. Q.; Chen, J. G.; Zhang, X. Y.; Yuan, L. F.; Cheng, Y. C.; Sun, A. H.; Wang, G.; Xu, G. J.; Guo, J. J. Direct Writing of Shape-Gradient Magnetic Alloy Microwire Arrays with Meniscus-Confined Electrodeposition Process, Adv. Mater. Technol., 2022, 7 (10), 2200024.
25. Long, F.; Xu, G. J.; Wang, J.; Ren, Y.; Cheng, Y. C. Variable Stiffness Conductive Composites by 4D Printing Dual Materials Alternately, Micromachines, 2022, 13 (8), 1343.
24. Long, F.; Cheng, Y. C.; Ren, Y.; Wang, J.; Li, Z. X.; Sun, A. H.; Xu, G. J. Latest Advances in Development of Smart Phase Change Material for Soft Actuators, Adv. Eng. Mater., 2022, 24 (3), 2100863.
23. Zhang, X. Y.; Yuan, L. F.; Lei, Y.; Zhang, Y. F.; Li, Y. Y.; Nie, W. Y.; Gao, Q. Q.; Li, Z. X.; Sun, A. H.; Liu, F. H.; Cheng, Y. C.; Xu, G. J.; Guo, J. J. Electrochemical gradients driven 3D printing of nano-twinned copper structures by direct current dynamic meniscus confined electrodeposition, Appl. Mater. Today, 2021, 24, 101138.
22. Ye, Z. Y.; Chu, C. Y.; Zhang, D. W.; Ma, S. W.; Guo, J. J.; Cheng, Y. C.; Xu, G. J.; Li, Z. X.; Sun, A. H. Study on 3D-Direct Ink Writing based on adding silica submicron-particles to improve the rheological properties of alumina ceramic ink, Mater. Today Commun., 2021, 28, 102534.
21. Lei, Y.; Zhang, X. Y.; Nie, W. Y.; Zhang, Y. F.; Gao, Q. Q.; Gao, F. P.; Li, Z. X.; Sun, A. H.; Liu, F. H.; Cheng, Y. C.; Xu, G. J.; Guo, J. J. The Composition and Magnetic Property of Co/Cu Alloy Microwires Prepared Using Meniscus-Confined Electrodeposition: Effect of Co2+ , Cu2+ Concentration at the Tip of the Meniscus, J. Electrochem. Soc., 2021, 168 (11), 112507.
20. Cheng, Y. C.; Zhao, Z. H.; Wang, H.; Hua, L. T.; Sun, A. H.; Wang, J.; Li, Z. X.; Guo, J. J.; Xu, G. J. Strong Electrorheological Performance of Smart Fluids Based on TiO2 Particles at Relatively Low Electric Field, Front. Mater., 2021, 8, 764455.
19. Liu, X. Y.; Liu, S. Y.; Cheng, Y. C.; Xu, G. J. Decrease in hydrophilicity and moisture readsorption of lignite: Effects of surfactant structure, Fuel, 2020, 273, 117812.
18. Liu, X. Y.; Han, Y. Y.; Cheng, Y. C.; Xu, G. J. Microwave-assisted ammonia modification of activated carbon for effective removal of phenol from wastewater: DFT and experiment study, Appl. Surf. Sci., 2020, 518, 146258.
17. Wu, H. S.; Chu, C. Y.; Chen, T.; Yu, M. L.; Guo, J. J.; Li, Z. X.; Xu, G. J.; Cheng, Y. C.; Sun, A. H. Electrically responsive structural colors from colloidal crystal arrays of PS@PANI core-shell nanoparticles, Colloid Surf. A, 2019, 577, 75-83.
16. Jiang, S. L.; Liao, G. X.; Xu, D. D.; Liu, F. H.; Li,W.; Cheng, Y. C.; Li, Z. X., Xu, G. J.; Mechanical properties analysis of polyetherimide parts fabricated by fused deposition modeling, High Performance Polymers, 2019, 31(1), 97-106.
15. Niu, Z.; Gunatilleke, W. D. C. B.; Sun, Q,; Lan, P. C.; Perman, J.; Ma, J. G.; Cheng, Y. C.; Aguila, B.; Ma, S. Q.; Metal-Organic Framework Anchored with a Lewis Pair as a New Paradigm for Catalysis, Chem, 2018, 4(11), 2587-2599.
14. Wu, J. H.; Zhang, L.; Xin, X.; Zhang, Y.; Wang, H.; Sun, A. H.; Cheng, Y. C.; Chen, X. D.; Xu, G. J.; The Electrorheological Fluids with High Shear Stress Based on Wrinkly Tin Titanyl Oxalate, ACS Appl. Mater. Interfaces, 2018, 10 (7), 6785-6792.
13. Liao, G. X.; Li Z. X.; Cheng, Y. C.; Xu, D. D.; Zhu, D. C.; Jiang, S. L.; Guo, J. J.; Chen. X. D.; Xu G. J.; Properties of oriented carbon fiber/polyamide 12 composite parts fabricated by fused deposition modeling, Materials &Design, 2018, 139, 283-192.
12. Liu, Y. J.; Bao, J. J.; Zhang, L.; Chen, C.; Guo J. J.; Cheng, Y. C.; Zhu, Y. J.; Xu, G. J.; Ultrasensitive SERS detection of propranolol based on sandwich nanostructure of molecular imprinting polymers, Sensors and Actuators B: Chemical, 2018, 255, 110-116.
11. Sun, Q; Aguila, B.; Perman J.; Earl, L. D.; Abney, C. W.; Cheng, Y. C.; Wei, H.; Nguyen, N.; Wojtas, L.; Ma, S. Q.; Postsynthetically Modified Covalent Organic Frameworks for Efficient and Effective Mercury Removal, Journal of the American Chemical Society, 2017, 139(7), 2786-2793.
10. Tang, X. B.; Sun, A. H.; Chu, C. Y.; Yu, M. L.; Ma, S.; Cheng, Y. C.; Guo, J. J.; Xu, G. J.; A novel silica nanowire-silica composite aerogels dried at ambient pressure, Materials &Design, 2017, 115, 415-421.
9. Wu, J. H; Song, Z. Y.; Liu, F. H.; Guo, J. J.; Cheng, Y. C.; Ma, S. Q*.; Xu, G. J., Giant electrorheological fluids with ultrahigh electrorheological efficiency based on a micro/nano hybrid calcium titanyl oxalate composite, NPG Asia Mater., 2016, 8, e322.
8. Jiang, M.; Qian, Z. J.; Zhou, X. F.; Xin, X.; Wu, J. H.; Chen, C.; Zhang, G. J.; Xu, G. J.; Cheng, Y. C., CTAB micelles assisted rGO-AgNP hybrids for SERS detection of polycyclic aromatic hydrocarbons. Phys. Chem. Chem. Phys., 2015, 17 (33), 21158-21163 (Advance article)
7. He, R.; Cheng, Y. C.; Jin, T.; Jiang, M.; Chen, C.; Xu, G. J., Core/Satellite Heterostructure with Hierarchical Nanogaps for Raman Spectroscopy Enhanced by Shell-Isolated Nanoparticles. Adv. Opt. Mater., 2014, 2 (8), 788-793.
6. Wu, J. H.; Jin, T.; Liu, F. H.; Guo, J. J.; Cui, P.; Cheng, Y. C.; Xu, G. J., Preparation of rod-like calcium titanyl oxalate with enhanced electrorheological activity and their morphological effect. J. Mater. Chem. C, 2014, 2 (28), 5629-5635.
5. Qian, Z. J.; Cheng, Y. C.; Zhou, X. F.; Wu, J. H.; Xu, G. J. , Fabrication of graphene oxide/Ag hybrids and their surface-enhanced Raman scattering characteristics. J. Colloid Interface Sci., 2013, 397, 103-107.
4. Wu, J. H.; Xu, G. J. ; Cheng, Y. C.; Liu, F. H.; Guo, J. J.; Cui, P., The influence of high dielectric constant core on the activity of core-shell structure electrorheological fluid. J. Colloid Interface Sci., 2012, 378, 36-43.
3. Song, Z. Y.; Cheng, Y. C.; Wu, J. H.; Guo, J. J.; Xu, G. J. , Influence of volume fraction on the yield behavior of giant electrorheological fluid. Appl. Phys. Lett., 2012, 101 (10), 101908.
2. Cheng, Y. C.; Guo, J. J.; Liu, X. H.; Sun, A. H.; Xu, G. J.; Cui, P., Preparation of uniform titania microspheres with good electrorheological performance and their size effect. J. Mater. Chem., 2011, 21 (13), 5051-5056.
1. Cheng, Y. C.; Wu, K. H.; Liu, F. H.; Guo, J. J.; Liu, X. H.; Xu, G. J.; Cui, P., Facile Approach to Large-Scale Synthesis of 1D Calcium and Titanium Precipitate (CTP) with High Electrorheological Activity. ACS Appl. Mater. Interfaces, 2010, 2 (3), 621-625.
代表性授權專利:
1. 靳婷,程昱川,許高傑,何茹,蔣萌,陳超,一種(zhǒng)防止電流變液分散介質揮發(fā)的方法,ZL201410201572.6
2. 何茹,程昱川,許高傑,蔣萌,靳婷,羅玉霞,用于待測物拉曼光譜檢測的複合粒子、其制備方法及使用方法,ZL201410006165.X
3. 劉豐華,許高傑,程昱川,郭建軍,納米無機富鋅複合防腐塗料及其制備方法,ZL201410334822.3
4. 錢志江,程昱川,何茹,靳婷,許高傑,一種(zhǒng)水體多環芳烴檢測試劑及其應用,ZL201310158667.X
5. 劉豐華,許高傑,程昱川,郭建軍,一種(zhǒng)納米凹土無機富鋅防腐塗料及其制備方法,申請号:201310072730.8
6. 錢志江,程昱川,郭建軍,王彪,孫愛華,許高傑,劉豐華,一種(zhǒng)具有表面(miàn)增強拉曼效應的氧化石墨烯/納米貴金屬複合材料及其制備,ZL201210268123.4
7. 程昱川,許高傑,郭建軍,孫愛華,王彪,吳敬華,一種(zhǒng)核殼型金屬氧化物/氧化钛複合物電流變液及其制備方法,ZL201210190760.4
8. 程昱川,郭建軍,劉雪輝,劉豐華,吳敬華,宋振陽,許高傑,崔平,一種(zhǒng)凹凸棒和钛氧基化合物複合材料電流變液,ZL201010509868.6
9. 吳敬華,許高傑,劉豐華,劉雪輝,郭建軍,程昱川,崔平,表面(miàn)改性草酸氧钛鈣電流變液及其制備方法,ZL200910099360.0
10. 程昱川,劉豐華,郭建軍,劉雪輝,吳開(kāi)華,許高傑,崔平,一種(zhǒng)棒狀鈣钛複合物巨電流變液及其制備方法,ZL200910097939.3