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中国科学院力学研究所导师教师师资介绍简介-苏业旺

本站小编 Free考研考试/2020-05-23

姓名:苏业旺
性别:
职称:研究员,****
学历:博士研究生
电话:
传真:
电子邮件:yewangsu(AT)imech.ac.cn
通讯地址北京市海淀区北四环西路15号,中科院力学所,LNM

简历:  03/2015~ 今 中国科学院力学研究所,研究员,中科院****
  12/2014~03/2015美国西北大学土木与环境工程系,研究助理教授
  02/2014~11/2014 美国西北大学土木与环境工程系,博士后(w/ Prof. Zdenek P. Bazant 院士)
  03/2011~01/2014 美国西北大学土木与环境工程系,博士后(w/ Prof. Yonggang Huang 院士)
  09/2005~01/2011 清华大学工程力学系,博士(导师:黄克智 院士,季葆华 教授)
  09/2001~07/2005大连理工大学工程力学系,本科
研究领域:柔性结构与器件力学
l 柔性结构的有限变形、屈曲与后屈曲理论
l 压电、热释电等功能材料与结构的理论、实验与应用
l 柔性传感器与柔性驱动器的设计、理论、制备与产品化
l 柔性可穿戴设备的设计、分析、制备与产品化
职位招聘 (2019年6月)
l 硕/博士研究生:每年招收1-2名
l 博士后:柔性结构与器件的设计、分析与制备(力学、机械、材料、电子相关专业背景均可)
l 长期合作岗位(助理/副研究员/研究员):柔性结构与器件的设计、分析与制备;团队管理和科技成果转化
社会任职:
获奖及荣誉:
代表论著: 共发表文章60余篇,包括多篇JMPS, IJSS, Nature Communications, PNAS, Advanced Materials, Advanced Functional Materials, Advanced Healthcare Materials, Small, Advanced Materials Technologies等,被SCI引用4000多次。(*为通讯作者,#为共同第一作者)  
十篇代表性文章:
1. Su, Y.; Ping, X.; Yu, K.; Lee, J.; Fan, J.; Wang, B.; Li, M.; Li, R.; Harburg, D.; Huang, Y.; Yu, C.; Mao, S.; Shim, J.;Yang,Q.; Lee, P.; Armonas, A.;Choi, K.; Yang, Y.; Paik, U.; Chang, T.; Dawidczyk, T.; Huang, Y.;Wang, S.*; Rogers, J.*, In-Plane Deformation Mechanics for Highly Stretchable Electronics. Advanced Materials, 2017, **. [PDF]
2. Su, Y.*; Dagdeviren, C.*; Li, R., Measured output voltages of piezoelectric devices depend on the resistance of voltmeter. Advanced Functional Materials, 2015, 25(33), 5320-5325. [PDF]
3. Su, Y.*; Liu, Z.; Xu, L., An Universal and Easy-to-Use Model for the Pressure of Arbitrary-Shape 3D Multifunctional Integumentary Cardiac Membranes. Advanced Healthcare Materials, 2016, 5, 8, 889-892.[PDF]
4. Su, Y.#; Wang, S.#; Huang, Y.#; Luan, H.; Dong, W.; Fan, J. A.; Yang, Q.; Rogers, J. A.; Huang, Y.*, Elasticity of fractal inspired interconnects. Small, 2015, 11(3), 367-373. [PDF]
5. Liu, H.; Zhao, H.; Li, S.; Hu, J.; Zheng, X.; Li, R.*; Chen, Y.*; Su, Y.*, Adhesion-Free Thin-Film-Like Curvature Sensors Integrated on Flexible and Wearable Electronics for Monitoring Bending of Joints and Various Body Gestures. Advanced Materials Technologies, 2019, 4(2): **. [PDF][Movie]
6. Su, Y.*; Zhao, H.; Liu, S.; Li, R.; Wang, Y.; Wang, Y.; Bian, J.; Huang, YA.*, Buckling of beams with finite prebuckling deformation. International Journal of Solids and Structures, 2019, 165, 148-159.[PDF][Movie]
7. He, S.; Su, Y.*; Ji, B.*; Gao, H., Some basic questions on mechanosensing in cell-substrate interaction. Journal of the Mechanics and Physics of Solids, 2014, 70, 116-135.[PDF]
8. Su, Y.; Ji, B.*; Hwang, K.; Huang, Y.*, Micro-buckling in the nanocomposite structure of biological materials. Journal of the Mechanics and Physics of Solid, 2012, 60(10), 1771-1790.[PDF]
9. Su, Y.#; Wu, J.#; Fan, Z.; Hwang, K.*; Song, J.; Huang, Y.*; Rogers, J. A., Postbuckling analysis and its application to stretchable electronics. Journal of the Mechanics and Physics of Solids, 2012, 60(3), 487-508.[PDF]
10. Su, Y.; Ji, B.*; Zhang, K.; Gao, H.; Huang, Y.*; Hwang, K., Nano to Micro Structural Hierarchy Is Crucial for Stable Superhydrophobic and Water-Repellent Surfaces. Langmuir, 2010, 26 (7), 4984-4989.[PDF]

所有发表文章列表:
69. Zhang, L.#; Jiang, X.#; Jiang, W.; Li, S.; Chi, Y.; Liu, H.; Zhang, M.; Li, J.; Fang, M.; Pan, B.; Chen, Y.; Shen, C.; Guo, X.; Li, R.*; Guo, L.*; Su, Y.*, Infrared Skin‐Like Active Stretchable Electronics Based on Organic–Inorganic Composite Structures for Promotion of Cutaneous Wound Healing, Advanced Materials Technologies, 2019, **. [PDF][Movie]
68. Jia, T.; Wang, Y.; Dou, Y.; Li, Y.; Jung de Andrade, M.; Wang, R.; Fang, S.; Li, J.; Yu, Z.; Qiao, R.; Liu, Z.; Cheng, Y.; Su, Y.; Minary-Jolandan, M.; Baughman, R.; Qian, D.; Liu, Z.*, Moisture Sensitive Smart Yarns and Textiles from Self‐Balanced Silk Fiber Muscles. Advanced Functional Materials, 2019, **. [PDF][Movie]
67. Yin S.; Su, Y.*, A traction-free model for the tensile stiffness and bending stiffness of laminated ribbons of flexible electronics. Journal of Applied Mechanics, 2019, 86(5): 051011. [PDF]
66. Su, Y.*; Zhao, H.; Liu, S.; Li, R.; Wang, Y.; Wang, Y.; Bian, J.; Huang, YA.*, Buckling of beams with finite prebuckling deformation. International Journal of Solids and Structures, 2019, 165, 148-159. [PDF][Movie]
65. Liu, H.; Zhao, H.; Li, S.; Hu, J.; Zheng, X.; Li, R.*; Chen, Y.*; Su, Y.*, Adhesion-Free Thin-Film-Like Curvature Sensors Integrated on Flexible and Wearable Electronics for Monitoring Bending of Joints and Various Body Gestures. Advanced Materials Technologies, 2019, 4(2): **. [PDF][Movie]
64. Liu, H.; Xue, R.; Hu, J.; Ping, X.; Wu, H.; Huang, M.; Zhang, H.; Guo, X.; Li, R.*; Chen, Y.*; Su, Y.*, Systematic study on the mechanical and electric behaviors of the nonbuckling interconnect design of stretchable electronics. Science China Physics, Mechanics & Astronomy, 2018, 61(11):114611. [PDF]
63. Hu, J.; Li, R.*; Liu, Y.; Su, Y.*, An overview of healthcare monitoring by flexible electronics. Science China Physics, Mechanics & Astronomy, 2018, 61, 094601. [PDF]
62. Zhang, X.*; Lin, J.; Lu, X.; Liu, L.; Liu, C.; Li, M.; Su, Y., A hypoplastic model for gas hydrate-bearing sandy sediments. International Journal For Numerical And Analytical Methods In Geomechanics, 2018, 42, 931-942. [PDF]
61. Pan, R.; Yang, Y.; Wang, Y.; Li, S.; Liu, Z.; Su, Y.; Quan, B.; Li, Y.; Gu, C.*; Li, J.*, Nanocracking and metallization doubly defined large-scale 3D plasmonic sub-10 nm-gap arrays as extremely sensitive SERS substrates. Nanoscale, 2018, 10, 3171-3180. [PDF]
60. Li, R.*; Wang, P.; Wang, B.; Zhao, C.; Su, Y.*, New Analytic Free Vibration Solutions of Rectangular Thick Plates With a Free Corner by the Symplectic Superposition Method. Journal of Vibration and Acoustics of the ASME, 2018, 140, 031016-1. [PDF]
59. Chang, T.; Tanabe, Y.; Wojcik, C.; Barksdale, A.; Doshay, S.; Dong, Z.; Liu, H.; Zhang, M.; Chen, Y.; Su, Y.; Lee, T.; Ho, J.; Fan, J.*, A General Strategy for Stretchable Microwave Antenna Systems using Serpentine Mesh Layouts. Advanced Functional Materials, 2017, 27(46), **. [PDF]
58. Zhang, M.; Liu, H.; Cao, P.; Chen, B.; Hu, J.; Chen, Y.; Pan, B.; Fan, J.; Li, R.*; Zhang, L.*; Su, Y.*, Strain-Limiting Substrates Based on Nonbuckling, Prestrain-Free Mechanics for Robust Stretchable Electronics. Journal of Applied Mechanics-Transactions of the ASME, 2017, 84(12), 121010.[PDF]
57. Huang, Y.; Ding, Y.; Bian, J.; Su, Y.; Zhou, J.; Duan, Y.*; Yin, Z.*, Hyper-stretchable self-powered sensors based on electrohydrodynamically printed, self-similar piezoelectric nano/microfibers. Nano Energy, 2017, 40, 432-439. [PDF][Movie1] [Movie2]
56. Zhao, L.; Hong, C.; Lin, L.; Wu, H.; Su, Y.; Zhang, X.; Liu, A.*, Controllable nanoscale engineering of aligned MoS2 ultrathin nanosheets by nitrogen doping of 3D grapheme hydrogel for inproved electrocatalytic hydrogen evolution. Carbon, 2017, 116, 223-231. [PDF]
55. Su, Y.*; Li, S.; Huan, Y.; Li, R.; Zhang, Z.; Joe ,P.; Dagdeviren, C.*, The universal and easy-to-use standard of voltage measurement for quantifying the performance of piezoelectric devices. Extreme Mechanics Letters, 2017, 15, 10-16.[PDF]
54. Fan, Z.; Wu, J.*; Ma, Q.; Liu, Y.; Su, Y.; Hwang, K.*, Postbuckling Analysis of Curved Beams. Journal of Applied Mechanics-Transactions of the ASME, 2017, 84(3), 031007. [PDF]
53. Li, S.; Liu, X.; Li, R.*; Su, Y.*, Shear deformation dominates in the soft adhesive layers of the laminated structure of flexible electronics. International Journal of Solids and Structures, 2017, 110, 305-314. [PDF]
52. Su, Y.; Ping, X.; Yu, K.; Lee, J.; Fan, J.; Wang, B.; Li, M.; Li, R.; Harburg, D.; Huang, Y.; Yu, C.; Mao, S.; Shim, J.; Yang,Q.; Lee, P.; Armonas, A.;Choi, K.; Yang, Y.; Paik, U.; Chang, T.; Dawidczyk, T.; Huang, Y.;Wang, S.*; Rogers, J.*, In-Plane Deformation Mechanics for Highly Stretchable Electronics. Advanced Materials, 2017, **. [PDF]
51. Li, M.; He, J.; Su, Y.*, mechanical problems and numerical methods on hydraulic fracture in shale. 李明耀, 贺甲元, 苏业旺, 页岩油气水力压裂的关键力学问题和数值计算方法. Science & Technology Review, 2016, 34(23), 32-42. [PDF]
50. Chau, V.; Bazant, Z.*; Su, Y., Growth model for large branched three-dimensional hydraulic crack system in gas or oil shale. Philosophical transactions. Series A, Mathematical, physical, and engineering sciences, 2016, 374(2078).[PDF]
49. Li, S.; Su, Y.*; Li, R.*, Splitting of the neutral mechanical plane depends on the length of the multi-layer structure of flexible electronics. Proceedings Of The Royal Society A-Mathematical Physical And Engineering Sciences, 2016, 472(2190), **. [PDF]
48. Su, Y.*; Liu, Z.; Xu, L., An Universal and Easy-to-Use Model for the Pressure of Arbitrary-Shape 3D Multifunctional Integumentary Cardiac Membranes. Advanced Healthcare Materials, 2016, 5, 8, 889-892.[PDF]
47. Bai, Z.; Su, Y.*; Ji, B.*, Buckling Behaviors of Staggered Nanostructure of Biological Materials. Journal of Applied Mechanics-Transactions of the ASME, 2016, 83, 3, 031011.[PDF]
46. Qiu, Y.; Zhang, Y.; Su, Y.; Cao, P.; Zhao, Y.*, Ultrasonic Nonlinearity Evaluation of the Cracked Interface. Mathematical Problems In Engineering, 2016, **. [PDF]
45. Li, R.*; Ye, H.; Zhang, W.; Ma, G.; Su, Y.*, An analytic model for accurate spring constant calibration of rectangular atomic force microscope cantilevers. Scientific Reports, 2015, 5, 15828. [PDF]
44. Kirane, K.; Su, Y.; Bazant, Z. P.*, Strain-rate-dependent microplane model for high-rate comminution of concrete under impact based on kinetic energy release theory. Proceedings of the Royal Society a-Mathematical Physical and Engineering Sciences, 2015, 471(2182), **. [PDF]
43. Su, Y.*; Dagdeviren, C.*; Li, R., Measured output voltages of piezoelectric devices depend on the resistance of voltmeter. Advanced Functional Materials, 2015, 25(33), 5320-5325. [PDF]
42. Su, Y.*; Li, S; Li, R.; Dagdeviren, C.*, Splitting of Neutral Mechanical Plane of Conformal, Multilayer Piezoelectric Mechanical Energy Harvester. Applied Physics Letters, 2015, 107(4). [PDF]
41. Dagdevirena, C.; Shi, Y.; Joe, P.; Ghaffari, R.; Balooch, G; Usgaonkar, K.; Gur, O.; Tran, P. L.; Crosby, J. R.; Meyer, M.; Su, Y.; Webb, C. R.; Tedesco, A. S.; Slepian, M. J., Huang, Y.; Rogers, J. A.*,Conformal Piezoelectric Systems for Clinical and Experimental Characterization of Soft Tissue Biomechanics. Nature Materials, 2015, 14, 728-736.[PDF]
40. Su, Y.; Bazant, Z. P.*; Zhao, Y.; Salviato, M.; Kirane, K., Viscous Energy Dissipation of Kinetic Energy of Particles Comminuted by High-Rate Shearing in Projectile Penetration, with Potential Ramification to Gas Shale. International Journal of Fracture, 2015, 193(1):77–85 . [PDF]
39. Huang, Y.#*; Dong, W.#; Huang, T.; Wang, Y.; Xiao, L.; Su, Y.; Yin, Z.*, Self-similar design for stretchable wireless LC strain sensors. Sensors and Actuators A: Physical, 2015, 224, 36–42.[PDF]
38. Bazant, Z. P.*; Su, Y.*, Impact Comminution of Solids Due to Progressive Crack Growth Driven by Kinetic Energy of High-Rate Shear. Journal of Applied Mechanics-Transactions of the ASME, 2015, 82, 031007.[PDF]
37. Su, Y.#; Wang, S.#; Huang, Y.#; Luan, H.; Dong, W.; Fan, J. A.; Yang, Q.; Rogers, J. A.; Huang, Y.*, Elasticity of fractal inspired interconnects. Small, 2015, 11(3), 367-373.[PDF]
36. Hattori, Y.; Falgout, L.; Lee, W.; Jung, S.-Y.; Poon, E.; Lee, J.; Na, I..; Geisler, A.; Sadhwani, D.; Zhang, Y.; Su, Y.; Wang, X.; Liu, Z.; Xia, J.; Cheng, H.; Webb, R.; Bonifas A.; Won, P.; Jeong J.-W.; Jang, K.-I.; Song, Y.; Nardone, B.; Nodzenski, M.; Fan, J. A.; Huang, Y.; West, D. P.; Paller, A. S.; Alam, M.; Yeo, W.-H.*; Rogers, J. A.*, Multifunctional Skin-Like Electronics for Quantitative,Clinical Monitoring of Cutaneous Wound Healing. Advanced Healthcare Materials, 2014, 3(10), 1597-1607.[PDF]
35. He, S.; Su, Y.*; Ji, B.*; Gao, H., Some basic questions on mechanosensing in cell-substrate interaction. Journal of the Mechanics and Physics of Solids, 2014, 70, 116-135.[PDF]
34. Yu, C.; Li, Y.; Zhang, X.; Huang, X.; Malyarchuk, V.; Wang, S.; Shi, Y.; Gao, L.; Su, Y.; Zhang, Y.; Xu, H.; Huang, Y; Rogers, J. A.*, Adaptive Optoelectronic Camouflage Systems With Designs Inspired by Cephalopod Skins. Proceedings of the National Academy of Sciences of the United States of America, 2014, 111(36), 12998-13003.[PDF][Movie]
33. Dagdeviren, C.#; Su, Y.#; Joe, P.; Yona, R.; Liu, Y.; Kim, Y.-S.; Huang, Y.; Damadoran1, A. R.; Xia, J.; Martin, L. W.; Huang, Y.*; Rogers, J. A.*, Conformable, Amplified Lead Zirconate Titanate Sensors with Enhanced Piezoelectric Response for Cutaneous Pressure Monitoring. Nature Communications, 2014, 5: 4496.[PDF]
32. Hwang, S.-W.#; Park, G.#; Edwards, C.; Corbin, E. A.; Kang, S.-K.; Cheng, H.; Song, J.-K.; Kim, J.-H.; Yu, S.; Ng, J.; Lee, J.; Yee, C.; Bhaduri. B.; Su, Y.; Omennetto, F. G.; Huang, Y.; Bashir, R.; Goddard, L.; Popescu, G.; Lee, K.-M.*, Rogers, J. A.*, Dissolution Chemistry and Biocompatibility of Single-Crystalline Silicon Nanomembranes and Associated Materials for Transient Electronics. ACS Nano, 2014, 8(6), 5843-5851.[PDF]
31. Su, Y.; Liu, Z.; Wang, S.; Ghaffari, R.; Kim, D.-H.; Hwang, K.-C.; Rogers, J. A. and Huang, Y.*, Mechanics of Stretchable Electronics on Balloon Catheter under Extreme Deformation. International Journal of Solids and Structures, 2014, 51(7-8), 1555-1561.[PDF]
30. Dagdeviren, C.#; Yang, B-D.#; Su, Y.#; Tran, P.; Joe, P.; Anderson, E.; Xia, J.; Doraiswamy, V.; Dehdashti, B.; Poston, R.; Khalpey, Z.; Ghaffari, R.; Huang, Y.; Gregoire, D.; Marivin, J.; Rogers, J.A.*, Conformal, Multilayer Piezoelectric Energy Harvesting and Storage From Motions of the Heart, Lung and Diaphragm. Proceedings of the National Academy of Sciences of the United States of America, 2014, 111 (5), 1927-1932.[PDF][Movie]
  ----Many news agencies highlight our work on conformal mechanical energy harvesters for the heart, lung and diaphragm, published in Proceedings of the National Academy of Sciences USA: Popular Mechanics, CBS News, LA Times, BBC News, Chemical and Engineering News, New Scientist, Chemistry World and many others, January 21, 2014.
29. Yin, L.; Cheng, H.; Mao, S.; Haasch, R.; Liu, Y.; Xie, X.; Hwang, S.-W.; Jain, H.; Kang, S.; Su, Y.; Li, R.; Huang, Y. and Rogers, J. A.*, Dissolvable metals for transient electronics. Advanced Functional Materials, 2014, 24(5), 645-658.[PDF]
28. Xu, L.#; Gutbrod, S.#; Bonifas, A. P.; Su, Y.; Sulkin, M.; Lu, N.; Chung, H.-J.; Jang, K.-I.; Liu, Z.; Ying, M.; Lu, C.; Webb, R. C.; Kim, J.-S.; Laughner, J. I.; Cheng, H.; Liu, Y.; Ameen, A.; Jeong, J.-W.; Kim. G.-T.; Huang, Y.; Efimov, I. R.*; Rogers, J. A.*, 3D Multifunctional Integumentary Membranes for Spatiotemporal Measurement/Stimulation Across the Entire Epicardium. Nature Communications, 2014, 5: 3329.[PDF][Movie]
  ----"Wrapped Around the Heart" Clancy and Xiang write a News and Views piece in Nature that highlights our work on 3D electronic membranes for the heart, originally published in Nature Communications Nature, March, 2014.
  http://www.nature.com/nature/journal/v507/n7490/pdf/507043a.pdf
  ----Many news agencies highlight our work on 3D electronic membranes for the heart, published in Nature Communications: NPR, ABC News, CNN, Smithsonian, National Geographic, MIT's Technology Review, New Scientist, Medical Daily, The Scientist and many others, February 28, 2014.
27. Fan, J.A.#; Yeo, W-H.#; Su, Y.#; Hatton, Y.; Lee, W.; Jung, S-Y.; Zhang, Y.; Liu, Z.; Cheng, H.; Falgout, L.; Bajema, M.; Coleman, T.; Gregoire, D.; Larson, R.; Huang, Y.; Rogers, J.A.*, Fractal Design Concepts for Stretchable Electronics. Nature Communications, 2014, 5: 3266.[PDF]
  "Patterns Make Circuits Stretchy" Editors at Nature highlight our work on fractal motifs for stretchable electronics, originally published in Nature Communications” Nature, February, 2014.
  http://www.nature.com/nature/journal/v506/n7489/pdf/506411e.pdf
26. Jeong, J.-W.#; Yeo, W.-H.#; Akhtar, A.; Norton, J.; Kwack, Y.-J.; Li, S., Jung, S.-Y.; Su, Y.; Lee, W.; Xia, J.; Cheng, H.; Huang, Y.; Choi, W.-S.; Bretl, T. W. and Rogers, J. A.*, Materials and optimized designs for human-machine interfaces via epidermal electronics. Advanced Materials, 2013, 25(47), 6839-6846.[PDF][Movie]
25. Zhang, Y.#; Fu, H.#; Su, Y.; Xu, S.; Cheng, H.; Fan, J.A.; Hwang, K.-C.; Rogers, J.A.*; Huang, Y.*, Mechanics of ultra-stretchable self-similar serpentine interconnects. Acta Materialia, 2013, 61, (20), 7816–7827.[PDF]
24. Li, M.#; Xia, J.#; Li, R.; Kang, Z.*; Su, Y.*, Design of two-dimensional horseshoe layout for stretchable electronic systems. Journal of Materials Science, 2013, 48, (24), 8443-8448.[PDF]
23. Su, Y.#; Li, R.#; Cheng, H.; Ying, M.; Bonifas, A. P.; Hwang, K.-C.; Rogers, J. A.* and Huang, Y.*, Mechanics of finger-tip electronics. Journal of Applied Physics, 2013, 114, 164511.[PDF]
22. Dagdeviren, C.#; Hwang, S.-W.#; Su, Y.; Kim, S.; Cheng, H.; Gur, O.; Haney, R.; Omenetto, F. G.; Huang, Y.; Rogers, J. A.*, Transient, Biocompatible Electronics and Energy Harvesters Based on ZnO. Small, 2013, 9(20), 3398-3404.[PDF]
21. Chen, C.; Tao, W.; Su, Y.; Wu, J.; and Song, J.*, Lateral Buckling of Interconnects in a Non-coplanar Mesh Design for Stretchable Electronics. Journal of Applied Mechanics-Transactions of the ASME, 2013, 80, 4: 041031.[PDF]
20. Li, R.#; Cheng, H.#; Su, Y.#; Hwang, S.-W.; Yin, L.; Tao, H.; Brenckle, M. A.; Kim, D. H.; Omenetto, F. G.; Rogers, J. A.*; Huang, Y. G.*, An Analytical Model of Reactive Diffusion for Transient Electronics. Advanced Functional Materials, 2013, 23 (24), 3106-3114.[PDF]
19. Yu, C.; Duan, Z.; Yuan, P.; Li, Y.; Su, Y.; Zhang, X.; Pan, Y.; Dai, L.; Nuzzo, R.; Huang, Y.; Jiang, H.*; Rogers, J. A.*, Electronically Programmable, Reversible Shape Change in Two- and Three-Dimensional Hydrogel Structures. Advanced Materials, 2013, 25, (11), 1541-1546.[PDF]
18. Persano, L.#; Dagdeviren, C.#; Su, Y.#; Zhang, Y.; Girardo, S.; Pisignano, D.; Huang, Y.; Rogers, J. A., High performance piezoelectric devices based on aligned arrays of nanofibers of poly(vinylidenefluoride-co-trifluoroethylene). Nature Communications, 2013, 4: 1633.[PDF]
17. Pan, B.; Li, R.*; Su, Y.; Wang, B.; Zhong, Y., Analytical bending solutions of clamped rectangular thin plates resting on elastic foundations by the symplectic superposition method. Applied Mathematics Letters, 2013, 26(3), 355-361.[PDF]
16. Xu, S.#; Zhang, Y.#; Cho, J.; Lee, J.; Huang, X.; Jia, L.; Fan, J.; Su, Y.; Su, J.; Zhang, H.; Cheng, H.; Lu, B.; Yu, C.; Chuang, C.; Kim, T.; Song, T.; Shigeta, K.; Kang, S.; Dagdeviren, C.; Petrov, I.; Braun, P.; Huang, Y.*; Paik, U.; Rogers, J. A.*, Stretchable batteries with self-similar serpentine interconnects and integrated wireless recharging systems. Nature Communications, 2013, 4:1543.[PDF][Movie]
  ----Many news agencies highlight our work on stretchable, rechargable lithium ion batteries, published in Nature Communications: Popular Science, CBS News, NBC News, BBC News, PC Magazine and many others, February 28, 2013.
15. Li, R.*; Li, M.; Su, Y.*; Song, J.; Ni, X., An analytical mechanics model for the island-bridge structure of stretchable electronics. Soft Matter, 2013, 9, 8476-8482. [PDF]
14. Kim, D.-H.#; Ghaffari, R.#; Lu, N.#; Wang, S.#; Lee, S.; Keum, H.; D'Angelo, R.; Klinker, L.; Su, Y.; Lu, C.; Kim, Y.; Ameen, A.; Li, Y.; Zhang, Y.; de Graff, B.; Hsu, Y.; Liu, Z.; Ruskin, J.; Xu, L.; Lu, C.; Omenetto, F.; Huang, Y.; Mansour, M.; Slepian, M.; Rogers, J. A.*, Electronic sensor and actuator webs for large-area complex geometry cardiac mapping and therapy. Proceedings of the National Academy of Sciences of the United States of America, 2012, 109(49), 19910-19915.[PDF]
13. Su, Y.; Liu, Z.; Kim, S.; Wu, J.; Huang, Y.*; Rogers, J. A.*, Mechanics of stretchable electronics with high fill factors. International Journal of Solids and Structures, 2012, 49(23-24), 3416-3421.[PDF]
12. Su, Y.*; He, S.; Hwang, K.; Ji, B. H.*, Why have not the hairs on the feet of gecko been smaller? Applied Physics Letters, 2012, 101, (17).[PDF]
11. Su, Y.; Ji, B.*; Hwang, K.; Huang, Y.*, Micro-buckling in the nanocomposite structure of biological materials. Journal of the Mechanics and Physics of Solids, 2012, 60(10), 1771-1790.[PDF]
10. Hwang, S.-W.#; Tao, H.#; Kim, D.-H.#; Cheng, H.; Song, J.; Rill, E.; Brenckle, M. A.; Panilaitis, B.; Won, S.; Kim, Y.; Song, Y.; Yu, K.; Ameen, A.; Li, R.; Su, Y.; Yang, M.; Kaplan, D.; Zakin, M.; Slepian, M.; Huang, Y.; Omenetto, F.*; Rogers, J. A.*, A Physically Transient Form of Silicon Electronics. Science, 2012, 337(6102), 1640-1644.[PDF]
  ----Work on 'transient' electronics appears in >1000 print, web, radio and television news stories, worldwide, following its publication in Science on Sep. 28th, 2012.
9. Ying, M.#; Bonifas, A. P#.; Lu, N.; Su, Y.; Li, R.; Cheng, H.; Ameen, A.; Huang, Y. G.; Rogers, J. A.*, Silicon nanomembranes for fingertip electronics. Nanotechnology, 2012, 23(34), 344004.[PDF]
  ----Many news agencies highlight our work on fingertip electronics: Wall Street Journal, Nanowerk, Science Daily, New Scientist, Innovation News Daily, Science NOW and many others August 2012.
8. Wang, S.; Li, M.; Wu, J.; Kim, D.-H.; Lu, N.; Su, Y.; Kang, Z.; Huang, Y.*; Rogers, J. A.*, Mechanics of Epidermal Electronics. Journal of Applied Mechanics-Transactions of the ASME, 2012, 79, 031022.[PDF]
7. Kim, S.; Su, Y.; Mihi, A.; Lee, S.; Liu, Z.; Bhandakkar, T. K.; Wu, J.; Geddes, J. B.; Johnson, H. T.; Zhang, Y. W.; Park, J. K.; Braun, P. V.; Huang, Y. G.; Rogers, J. A.*, Imbricate Scales as a Design Construct for Microsystem Technologies. Small, 2012, 8(6), 901-906.[PDF]
6. Su, Y.#; Wu, J.#; Fan, Z.; Hwang, K.*; Song, J.; Huang, Y.*; Rogers, J. A., Postbuckling analysis and its application to stretchable electronics. Journal of the Mechanics and Physics of Solids, 2012, 60(3), 487-508.[PDF]
5. Su, Y.; He, S.; Ji, B.*; Huang, Y.*; Hwang, K., More evidence of the crucial roles of surface superhydrophobicity in free and safe maneuver of water strider. Applied Physics Letters, 2011, 99(26), 263704.[PDF]
4. Su, Y.; Ji, B.*; Huang, Y.*; Hwang, K., Nature's Design of Hierarchical Superhydrophobic Surfaces of a Water Strider for Low Adhesion and Low-Energy Dissipation. Langmuir, 2010, 26 (24), 18926-18937.[PDF]
3. Su, Y.; Ji, B.*; Zhang, K.; Gao, H.; Huang, Y.*; Hwang, K., Nano to Micro Structural Hierarchy Is Crucial for Stable Superhydrophobic and Water-Repellent Surfaces. Langmuir, 2010, 26 (7), 4984-4989.[PDF]
2. Su, Y.; Ji, B.*; Huang, Y.*; Hwang, K., Concave biological surfaces for strong wet adhesion. Acta Mechanica Solida Sinica, 2009, 22(6), 593-604.[PDF]
1. Su, Y.; Ji, B.*; Huang, Y.*; Hwang, K., Effects of contact shape on biological wet adhesion. Journal of Materials Science, 2007, 42, (21), 8885-8893.[PDF]

书章:
2. Su, Y.; Wu, J.; Fan, Z.; Hwang, K.-C.; Huang, Y.*; Roger J.A., “Mechanics of Twistable Electronics,” in Stretchable Electronics (ed. Takao Someya), Wiley-Vch, Weinheim, Germany, pp 31-39, 2013.
1. Duan, Y.; Ding, Y., Wang, Y., Su, Y.*, Huang, YA.*, “Flexible/Stretchable Piezoelectric Nanofiber Devices”.
专利:
6. 苏业旺;李爽, 一种可伸展的柔性电极及其制备方法: 中国,CN1.
5. 苏业旺;刘浩;陈玉丽, 一种可大范围连续调频的便携式气球天线及制作方法: 中国,CN0.
4. 苏业旺;李爽, 一种可延展的喷墨打印柔性电路板及其制备方法: 中国,CN9.
3. 苏业旺;刘浩;陈玉丽, 一种柔性曲率传感器及其制备方法: 中国,CN6.
2. 苏业旺;李爽, 一种测量压电器件开路电压的装置和方法: 中国,CN9.
1. 苏业旺;李爽, 一种仿鱼鳞结构太阳能电池及其制备方法: 中国,CN7.

承担科研项目情况:



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