Artificial Muscles from Fishing Line and Sewing Thread CS Haines, MD Lima, N Li, GM Spinks, J Foroughi, JDW Madden, SH Kim, ... Science 343 (6173), 868-872, 2014 | 1341 | 2014 |
Electrically, chemically, and photonically powered torsional and tensile actuation of hybrid carbon nanotube yarn muscles MD Lima*, N Li*, MJ De Andrade, S Fang, J Oh, GM Spinks, ME Kozlov, ... Science 338 (6109), 928-932, 2012 | 743 | 2012 |
Three-dimensionally bonded spongy graphene material with super compressive elasticity and near-zero Poisson’s ratio Y Wu*, N Yi*, L Huang*, T Zhang, S Fang, H Chang, N Li, J Oh, JA Lee, ... Nature communications, 6141, 2015 | 569 | 2015 |
Harvesting electrical energy from carbon nanotube yarn twist SH Kim*, SC Haines*, N Li*, KJ Kim, TJ Mun, C Choi, J Di, YJ Oh, ... Science 357 (6353), 773-778, 2017 | 380 | 2017 |
New Twist on Artificial Muscles C Haines*, N Li*, GM Spinks, AE Aliev, J Di, RH Baughman Proceedings of the National Academy of Sciences (PNAS) 113 (42), 11709-11716, 2016 | 331 | 2016 |
Efficient and large-scale synthesis of few-layered graphene using an arc-discharge method and conductivity studies of the resulting films Y Wu, B Wang, Y Ma, Y Huang, N Li, F Zhang, Y Chen Nano Research 3 (9), 661-669, 2010 | 314 | 2010 |
Sheath-run artificial muscles J Mu, MJ de Andrade, S Fang, X Wang, E Gao, N Li, SH Kim, H Wang, ... Science 365 (6449), 150-155, 2019 | 258 | 2019 |
Electrical Power From Nanotube and Graphene Electrochemical Thermal Energy Harvesters TJ Kang, S Fang, ME Kozlov, CS Haines, N Li, YH Kim, Y Chen, ... Advanced Functional Materials 22 (3), 477-489, 2012 | 225 | 2012 |
Carbon Nanotube–Reduced Graphene Oxide Composites for Thermal Energy Harvesting Applications MS Romano, N Li, D Antiohos, JM Razal, A Nattestad, S Beirne, S Fang, ... Advanced Materials 25 (45), 6602-6606, 2013 | 221 | 2013 |
High Power Density Electrochemical Thermocells for Inexpensively Harvesting Low-Grade Thermal Energy L Zhang, T Kim, N Li, TJ Kang, J Chen, JM Pringle, M Zhang, AH Kazim, ... Advanced Materials 29 (12), 1605652, 2017 | 218 | 2017 |
Electromechanical actuator with controllable motion, fast response rate, and high-frequency resonance based on graphene and polydiacetylene J Liang, L Huang, N Li, Y Huang, Y Wu, S Fang, J Oh, M Kozlov, Y Ma, ... ACS nano 6 (5), 4508-4519, 2012 | 159 | 2012 |
Torsional refrigeration by twisted, coiled, and supercoiled fibers R Wang*, S Fang*, Y Xiao, E Gao, N Jiang, Y Li, L Mou, Y Shen, W Zhao, ... Science 366 (6462), 216-221, 2019 | 158 | 2019 |
Electrochemically Powered, Energy-Conserving Carbon Nanotube Artificial Muscles JA Lee, N Li, C Haines, KJ Kim, X Lepró, R Ovalle-Robles, SJ Kim, ... Advanced Materials 29 (31), 1700870, 2017 | 144 | 2017 |
Unipolar stroke, electroosmotic pump carbon nanotube yarn muscles Science 371 (6528), 494-498, 2021 | 137 | 2021 |
Strong, Twist-Stable Carbon Nanotube Yarns and Muscles by Tension Annealing at Extreme Temperatures J Di, S Fang, FA Moura, DS Galvão, J Bykova, A Aliev, ... Advanced Materials 28 (31), 6598-6605, 2016 | 126 | 2016 |
Towards ionic liquid-based thermoelectrochemical cells for the harvesting of thermal energy TJ Abraham, DR MacFarlane, RH Baughman, L Jin, N Li, JM Pringle Electrochimica Acta 113, 87-93, 2013 | 118 | 2013 |
Direct and large scale electric arc discharge synthesis of boron and nitrogen doped single-walled carbon nanotubes and their electronic properties B Wang, Y Ma, Y Wu, N Li, Y Huang, Y Chen Carbon 47 (8), 2112-2115, 2009 | 87 | 2009 |
Polar-Electrode-Bridged Electroluminescent Displays: 2D Sensors Remotely Communicating Optically X Xu, D Hu, L Yan, S Fang, C Shen, YL Loo, Y Lin, CS Haines, N Li, ... Advanced Materials, DOI: 10.1002/adma.201703552, 2017 | 61 | 2017 |
Facile and Scalable Fabrication of Well‐Aligned and Closely Packed Single‐Walled Carbon Nanotube Films on Various Substrates B Wang, Y Ma, N Li, Y Wu, F Li, Y Chen Advanced Materials 22 (28), 3067-3070, 2010 | 51 | 2010 |
Coiled and non-coiled twisted nanofiber yarn torsional and tensile actuators N Li, CS Haines, MD Lima, MJ De Andrade, S Fang, J Oh, ME Kozlov, ... US Patent 9,784,249, 2017 | 48 | 2017 |