Liu Wang
Click:
The Founding Time:..
The Last Update Time:..
· Scan attention
·Scientific Research
Representative publications
(Note: # Equal Contribution, * Corresponding Author)
[26]M. Sui#, Y. Ouyang#, J. Jin#*, Z. Chai, C. Wei, J. Li, M. Xu, W. Li, L. Wang*, S. Zhang*, A soft-packaged and portable rehabilitation glove capable of closed-loop fine motor skills, Nature Machine Intelligence, 5, 1149-1160,2023 (公众号简介,科大新闻)
[25] Y. Sun, H. Zhang, Y. Zhao, J. Wu, Y. Zhu, M. Li*, L. Wang*, Locally Reprogrammable Magnetic Micropillars with On-Demand Reconfiguration and Multi-Functionality, Advanced Materials Technologies, 202300773, 2023
[24] Y. Sun, L. Wang*, Z. Zhu, X. Li, H. Sun, Y. Zhao, C. Peng, J. Liu*, S. Zhang*, M. Li*,3D-Printed ferromagnetic Liquid Crystal Elastomer with Programmed Dual-Anisotropy And Multi-Responsiveness, Advanced Materials, 202302824, 2023 (Frontispiece, 公众号简介)
[23] J. Wang, Y. Zhou, L. Xu, L. Jiang* and L. Wang*, Magnetic Kirigami by Laser Cutting, Acta Mechanica Solida Sinica, 2023 (公众号简介)
[22] J. Shi*, S. Yang, Z. Zheng, J. Li, L. Wang*, W. Zeng, L. Yang, Y. Xiong, Z. Jin, X. Tao*,Textile-based piezocatalytic platform for organics degradation under low-frequency water flow, Journal of Materials Chemistry A, 2023 (公众号简介)
[21] Y. Sun, L. Wang*, Y. Ni, H. Zhang, Z. Cui, J. Li, Y. Zhu, J. Liu, S. Zhang, Y. Chen*, M. Li*, 3D printing of thermosets with diverse rheological and functional applicabilities, Nature Communications, 14:245, 2023 (公众号简介,科大新闻)
[20] Y. Yang#, J. Wang#, L. Wang#, Q. Wu#, L. Ling, Y. Yang, S. Ning, Y. Xie, Q. Cao, L. Li, J. Liu*, Q. Ling*, J. Zang*, Magnetic Soft Robotic Bladder for Assisted Urination, Science Advances, 8(3), 2022
[19] C. Wang#, X. Chen#, L. Wang, M. Makihata, H Liu, T Zhou, X Zhao*, Bioadhesive Ultrasound for Long-term Continuous Imaging of Diverse Organs, Science, 337(517–523),2022 (MIT news, Science Perspective, Best Innovator 2022 by Time, 公众号简介1, 公众号简介2)
[18] S. Yi#, L. Wang#, Z. Chen#, J. Wang, X. SOg, P. Liu, Y. Zhang, Q. Luo, L. Peng, Z. Wu*, C. F. Guo*, L. Jiang*, High-throughput fabrication of soft magneto-origami machines, Nature Communications, 13:4177, 2022 (公众号简介1, 公众号简介2)
[17] G. Theocharidis#, H. Yuk#*, H. Roh#, L. Wang#, I. Mezghani, J. Wu, A. Kafanas, M. Contreras, B. Sumpio, Z. Li, E. Wang, L. Chen , C.F. Guo, N. Jayaswal, X. Katopodi, N. Kalavros, C. S. Nabzdyk, I. S. Vlachos, A. Veves*, X. Zhao*, A strain-programmed patch for the healing of diabetic wounds, Nature Biomedical Engineering, 2022 (公众号简介)
[16] L. Wang, C.F. Guo, X. Zhao*, Magnetic soft continuum robots with contact forces, Extreme Mechanics Letters, 51, 101604, 2022
[15] C. Zhou#, Y. Yang#, J. Wang, Q. Wu, Z. Gu, Y. Yang, X. Liu, H. Tang, Q. Ling, L.Wang*, J. Zang*, Ferromagnetic soft catheter robots for minimally invasive bioprinting, Nature Communications, 12:5072, 2021 (公众号简介1,公众号简介2)
[14] L. Wang, D. Zheng, C. F. Guo, X. Zhao*, Evolutionary Design of Magnetic Soft Continuum Robots, Proceedings of the National Academy of Sciences of USA, 118(21), e2021922118, 2021 (公众号简介)
[13] L. Zhao#, L. Wang#, J. Shi, X. Hou, Q. Wang, Y. Zhang, Y. Wang, N. Bai, J. Yang, J. Zhang, B. Yu, C. F. Guo*, Shape-Programmable Interfacial Solar Evaporator with Salt-Precipitation Monitoring Function, ACS Nano, 15(3), 5752–5761, 2021
[12] L. Wang, K. Ha, G. Rodin, K. Liechti, N. Lu*, Mechanics of Crater-Enabled Soft Dry Adhesives: A Review, Frontiers in Mechanical Engineering, 601510,2020
[11] Y. Chang#, L. Wang#, R. Li, Z. Zhang, Q. Wang, J. Yang, C. F. Guo* and T. Pan*, First Decade of Iontronic Sensing: From Droplet Sensors to Flexible Electronics, Advanced Materials, 33(7), 202003464, 2020 (selected as Frontipiece)
[10] L. Wang#, Y. Kim#, C.F. Guo, X. Zhao*, Hard-Magnetic Elastica, Journal of the Mechanics of Physics and Solids,142,104045, 2020 (Top-cited Paper by JMPS)
[8] N. Bai#, L. Wang#, Q. Wang, J. Deng, Y. Wang, P. Lu, J. Huang, G. Li, Y. Zhang, J. Yang, K. Xie. X. Zhao, C. F. Guo*, Graded Intrafillable Architecture-based Iontronic Pressure Sensor with Ultra-Broad-Range High Sensitivity, Nature Communications, 11:209, 2020 (ESI Hot Paper)
[7] L. Wang, S. Qiao, K. Ha, N. Lu*, Suction Effects in Crater Arrays, Extreme Mechanics Letters, 30, 100496, 2019
[6] M. Kim#, R. Parasuraman#, L. Wang#, Y. Park, B. Kim, S. Lee, N. Lu*, B. Min*, C. Lee*, Soft-Packaged Sensor-Instrumented Wearable Glove for Natural Interaction, NPG Asia Materials, 11, 2019
[5] S. Qiao#, L. Wang#, K. Ha, N. Lu*, Suction Effects of Craters Under Water, Soft Matter, 14(42), 2018
[3] L. Wang, S. Qiao, N. Lu*, Effects of Surface Tension on the Suction Forces Generated by Miniature Craters, Extreme Mechanics Letters, 15, 130-138, 2017
[2] L. Wang, S. Qiao, S. K. Ameri, H. Jeong, N. Lu*, A Thin Elastic Membrane Conformed to a Soft and Rough Substrate subjected to Stretching/Compression, Journal of Applied Mechanics, 84(11), 2017
[1] L. Wang, N. Lu*, Conformability of a Thin Elastic Membrane Laminated on a Soft Substrate with Slightly Wavy Surface, Journal of Applied Mechanics, 83(4), 2016
Other publications
[22] Y. Zhang#, J. Yang#, X. Hou#, G. Li, L. Wang, N. Bai, M. Cai, L. Zhao, Y. Wang, J. Zhang, K. Chen, X. Wu, C. Yang, Y. Dai, Z. Zhang, C. F. Guo*, Highly stable flexible pressure sensors with a quasi-homogeneous composition and interlinked interfaces,Nature Communications, 13: 1217, 2022
[21] N. Bai, L. Wang, Y. Xue, Y. Wang, X. Hou, G. Li, Y. Zhang, M. Cai, L. Zhao, F. Guan, X. Wei*, C. F. Guo*, Graded Interlocks for Iontronic Pressure Sensors with High Sensitivity and High Linearity over a Broad Range, ACS Nano, 16(3),4338-4347, 2022
[20] X. Liang, G. Chen, S. Lin, J. Zhang, L. Wang, P. Zhang, Z. Wang, Z. Wang, Y. Lan, Q. Ge, J. Liu*, Anisotropically Fatigue‐Resistant Hydrogels, Advanced Materials, 33(30), 21022011, 2021 (Inside Back Cover)
[19] K. Ha, W. Zhang, H. Jang, S. Kang, L. Wang, P. Tan, H. Hwang, N. Lu*,Highly Sensitive Capacitive Pressure Sensors over a Wide Pressure Range Enabled by the Hybrid Responses of a Highly Porous Nanocomposite, Advanced Materials, 33(48), 2103320, 2021 (Back Cover)
[18] P. Zhu#, H. Du#, X. Hou#, P. Lu, L. Wang, J. Huang, N. Bai, Z. Wu, N. X Fang*, C. F. Guo*, Skin-electrode iontronic interface for mechanosensing, Nature Communications, 12: 4731, 2021
[17] P. Lu, L. Wang, P. Zhu, J. Huang, Y. Wang, N. Bai, Y. Wang, G. Li, J. Yang, K. Xie, J. Zhang, B. Yu, Y. Dai, C. F. Guo*, Iontronic pressure sensor with high sensitivity and linear response over a wide pressure range based on soft micropillared electrodes, Science Bulletin, 66(11), 1091-1100, 2021
[16] J. Shi, W. Zeng, Z. Dai, L. Wang, Q. Wang, S. Lin, Y, Xiong, S. Yang, S. Shang, W. Chen, L. Zhao, X. Ding, X. Tao, Y. Chai, Piezocatalytic Foam for Highly Efficient Degradation of Aqueous Organics, Small Science, 1(2), 2000011,2020
[15] Y. Wang, Y. Lang, Y. Bai, S. Liu, L. Wang, Y. Zhou, C. Hou, Z. Yang, H. Wu, J. Ma, Y. Shen, P. Deng, S. Zhang, T. Duan, Z. Li, J. Ren, L.Xiao, Z. Yin, N. Lu*, Y. Huang*, Electrically compensated, tattoo-like electrodes for epidermal electrophysiology at scale, Science Advances, 6(43), 2020
[14] J. Huang, L. Wang, Y. Jin, P. Lu, L. Wang, N. Bai, G. Li, P. Zhu, Y. Wang, J. Zhang, Z. Wu, C. F. Guo*, Tuning the Rigidity of Silk Fibroin for the Transfer of Highly Stretchable Electronics, Advanced Functional Materials, 33(23), 2001518, 2020
[13] Y. Wang#, T Hong#, L. Wang, L. Gang, N. Bai, G. Li, P. Lu, M. Cai, Z. Wu, N. Lu, B. Yu, J. Zhang, C. F. Guo*, Epidermal electrodes with enhanced breathability and high sensing performance. Materials Today Physics, 12, 1001911, 2020
[12] K. Cho#, S. Kim#, J. Kim#, S. Song#, W. Lee, L. Wang, M Soh, N. Lu, T. Hyeon, B. Kim*, D. Kim*, Large scale and integrated platform for digital mass culture of anchorage dependent cells, Nature Communications, 10:4824, 2019
[11] J. Shi, S. Lv, L. Wang, Z. Dai, S. Yang, L. Zhao, H. Tian, M. Du, H. Li, Y. Fang*, Crack Control in Biotemplated Gold Films for Wide‐Range, Highly Sensitive Strain Sensing, Advanced Materials Interfaces, 6(20), 201901223, 2019
[10] H. Jeong, L. Wang, T. Ha, R. Mitbander, X. Yang, Z. Dai, S. Qiao, L. Shen, N. Sun, N. Lu*, Modular and Reconfigurable Wireless E‐Tattoos for Personalized Sensing, Advanced Materials Technology, 4(8), 2019
[9] J. Shi, L. Wang, Z. Dai, L. Zhao, M. Du, H. Li*, Y. Fang*, Multiscale Hierarchical Design of a Flexible Piezoresistive Pressure Sensor with High Sensitivity and Wide Linearity Range, Small, 14(27), 2018
[8] S. Qiao, L. Wang, H. Jeong, G. J. Rodin*, N. Lu*, Suction Effects of Surface Craters, Journal of the Royal Society Interface, 14(135), 2017
[7] S. K. Ameri, R. Ho, H. Jang, L. Tao, Y. Wang, L. Wang, D. M. Schnyer, D. Akinwande*, N. Lu*, Graphene Electronic Tattoo Sensors, ACS Nano, 11(8), 2017
[6] J. Song, D. Son, J. Kim, Y. Yoo, G. Lee, L. Wang, M. Choi, J. Yang, M. Lee, K. Do, J. Koo, N. Lu, J. Kim, T. Hyeon, Y. Song, D. Kim*, Wearable Force Touch Sensor Array Using a Flexible and Transparent Electrode, Advanced Functional Materials, 27(6), 2016
[5] S. Kim, K. Cho, H. Cho, L. Wang, S. Park, S. Lee, T. Hyeon, N. Lu, S. Choi* and D. Kim*, Stretchable and Transparent Biointerface Using Cell-Sheet Graphene Hybrid for Electrophysiology and Therapy of Skeletal Muscle, Advanced Functional Materials, 26(19), 2016 (Front Cover)
[4] H. Lee, T. Choi, Y. Lee, H. Cho, R. Ghaffari, L. Wang, H. Choi, T. Chung, N. Lu, T. Hyeon, S. Choi, and D. Kim*, A Graphene-based Electrochemical Device with Thermo-responsive Microneedles for Diabetes Monitoring and Therapy, Nature Nanotechnology, 11(6), 2016
[3] S. Qiao, J. Gratadour, L. Wang, N. Lu*, Conformability of A Thin Elastic Membrane Laminated on A Rigid Substrate with Corrugated Surface , IEEE Transactions on Components, Packaging and Manufacturing Technology 5(9), 2015 (Invited paper)
[2] X. Wang, L. Wang, J. Liu, L. Peng*, Camel-back band-induced power factor enhancement of thermoelectric lead-tellurium from Boltzmann transport calculations. Applied Physics Letters, 104(13), 2014
[1] J. Liu, X. Wang, L. Wang, L. Peng*, Coupled hydrothermal synthesis/hot pressing of PbSe/C@ PbTe heterogonous composites with enhanced thermoelectric performance. Materials Letters, 117, 49-52, 2014
Book chapters
[2] S. K. Ameri, L. Wang, Graphene electronic tattoo sensors for point-of-care personal health monitoring and human–machine interfaces, Emerging 2D Materials and Devices for the Internet of Things, Elseiver, 2020
[1] N. Lu*, S. Yang, L. Wang, Stretchability, conformability, and low-cost manufacture of epidermal sensors. Stretchable Bioelectronics for Medical Devices and Systems, Springer Cham, 2016
Patents
No content
Published Books
Research Projects
No content
Research Field
No content
Paper Publications
- [1]Model-guided Navigation of Magnetic Soft Guidewire for Safe Endovascular Surgery, Journal of the Mechanics of Physics and Solids, 2024, 190,105731.
- [2]Ultrafast piezocapacitive soft pressure sensors with over 10 kHz bandwidth via bonded microstructured interfaces,Nature Communications, 2024, 15:3048..
- [3]Magnetic soft micro-fiberbots for robotic embolization, Science Robotics, 2024, 9(87), eadh2479..
- [4]A soft-packaged and portable rehabilitation glove capable of closed-loop fine motor skills, Nature Machine Intelligence, 2023, 5, 1149-1160..
- [5]Evolutionary Design of Magnetic Soft Continuum Robots, Proceedings of the National Academy of Sciences of USA, 2011,118(21), e2021922118..