(* denotes equal contribution; ^ denotes corresponding author)
Since joining Dartmouth
2020
[65] Congran Jin, Jinhua Zhang*, Ian Trase, Shicheng Huang, Zhe Xu, Lin Dong, Ziyue Liu, Sophie Usherwood, John X.J. Zhang* and Zi Chen* , Tunable, flexible and resilient robots driven by an electrostatic actuator, Advance Intelligent Systems, 1900162, 2020 (featured on the cover; highlighted in Advanced Science News).
[64] Xing Guo†, Baihao Shao†, Shaobing Zhou, Ivan Aprahamian, and Zi Chen*. Intracellular Particle Tracking and Precise Control of Drug Release Using an Emissive Hydrazone Photochrome, Chemical Science, DOI: 10.1039/C9SC05321B.
[63] Junjie Lin, Qiaohang Guo*, Shiwen Dou, Nengbin Hua, Chan Zheng, Yian Pan, Youting Huang, Zi Chen*, Wenzhe Chen*. Bistable Structures with Controllable Wrinkled Surface. Extreme Mechanics Letters, 100653, 2020.
[62] S. Li, H. Yu, T.-D. Li, Z. Chen, W. Deng, A. Anbari, and J. Fan*, Understanding transport of an elastic, spherical particle through a confining channel. Applied Physics Letters, in press (Editors’ pick).
[61] Congran Jin, Nanjing Hao, Zhe Xu, Ian Trase, Yuan Nie, Lin Dong, Andrew Closson, Zi Chen, John X.J. Zhang. Flexible Piezoelectric Nanogenerators Using Metal-doped ZnO-PVDF Films. Sensors & Actuators: A. Physical, in press.
[60] Ian Trase, Zhe Xu, Zi Chen*, Hong Tan, John X.J. Zhang*. Thin-Film Bidirectional Transducers for Haptic Wearables. Sensors & Actuators: A. Physical, 303: 111655, 2020.
[59] Lin Wang, Miao Wang, Guangchao Wan, Xing Guo, Xinwen Xie, Wei Liu, Yunmao Zhang, Jing Fan, Xu Hou*, Zi Chen*. Porosity-tunable structures with “fossilized” bubbles, ACS Applied Polymer Materials, 2020, 2, 2, 497-504.
2019
[58] Guangchao Wan†, Yin Liu†, Zhe Xu†, Congran Jin, Lin Dong, Xiaomin Han, John X.J. Zhang*, and Zi Chen*. Tunable Bistability of a Clamped Elastic Beam, Extreme Mechanics Letters, 34:100603, 2019.
[57] Lin Dong, Andrew B.Closson, Meagan Oglesby, Danny Escobedo, Xiaomin Han, Yuan Nie, Shicheng Huang, Marc D. Feldman*, ZiChen*, John X.J.Zhang*. In vivo cardiac power generation enabled by an integrated helical piezoelectric pacemaker lead. Nano Energy 66: 104085, 2019.
[56] Catalina-Paula Spatarelu†, Hao Zhang†, Dung Trung Nguyen†, Xinyue Han, Ruchuan Liu, Qiaohang Guo, Jacob Notbohm, Jing Fan, Liyu Liu*, Zi Chen*. Biomechanics of Collective Cell Migration in Cancer Progression– Experimental and Computational Methods. ACS Biomaterials Science & Engineering, 5, 8, 3766-3787, 2019. doi: 10.1021/acsbiomaterials.8b01428.
[55] Lin Dong, Andrew B. Closson, Zhe Xu, Yin Liu, Xiaomin Han, Zi Chen, and John X.J. Zhang. Vibration Energy Harvesting System: Transduction Mechanisms, Frequency Tuning Techniques and Biomehcanical Applications. Advanced Materials Technologies, in press.
[54] Lin Wang†, Dong Wang†, Shicheng Huang†, Xing Guo, Guangchao Wan, Jing Fan and Zi Chen*. Controllable Shape Changing and Distinct tri-stability of Bilayer Composite. ACS Materials&Interface, 11 (18): 16881-16887, 2019.
[53] Bingzhe Xu†, Xiaomin Han†, Yuwei Hu, Yiming Luo, Chia-Hung Chen, Zi Chen*, Peng Shi*. Remotely Controlled Transformable Soft Robot Based on Engineered Cardiac Tissue Construct. Small, 2019, 1900006 (featured as a cover art of the Frontispiece: Xu_et_al-2019-Small). https://doi.org/10.1002/smll.201900006.
[52] Shicheng Huang, Likun Tan, Nan Hu, Dong Wang, Kevin T. Chu, Matthew Abate, Lin Wang, Xiaomin Han, Wanliang Shan, and Zi Chen^. A pseudo-spectral method computational framework for post-buckling of a thin rod embedded in elastic media, under review.
2018
2017
2016
2015
[21] Z. Chen^. Shape Transition and Multi-stability of Helical Ribbons: a Finite Element Method Study, Archive of Applied Mechanics, 85: 331-338 (2015).
Prior to joining Dartmouth
2014
[20] Q. Guo*, A.K. Mehta, M.A. Grover, W. Chen, D.G. Lynn and Z. Chen*^. Shape selection and multiy-stability in helical ribbons. Applied Physics Letters, 14, 917-921 (2014). Featured on the cover of APL.
[19] Q. Guo*, Z. Chen*^, W. Li, P. Dai, K. Ren, J. Lin, L.A. Taber and W. Chen. Mechanics of tunable helices and geometric frustration in biomimetic seashells. Europhysics Letters, 105, 64005 (2014). EPL Highlights of 2014.
[18] Z. Chen^. Geometric nonlinearity and mechanical anisotropy in strained helical nanoribbons. Nanoscale, 6, 9443-9447 (2014).
[17] Q. Guo*, H. Zheng*, W. Chen and Z. Chen*^. Modelling bistable behaviors in morphing structures through finite element simulations. Bio-medical materials and Engineering, 24, 557-562 (2014).
[16] Q. Guo*, H. Zheng*, W. Chen and Z. Chen*^. Finite Element Simulations on Mechanical Self-Assembly of Biomimetic Helical Structures. Journal of Mechanics in Medicine and Biology, 13, 1340018 (2014).
2013 and before
[15] W. Shan^ and Z. Chen^. Mechanical instability of thin elastic rods.Journal of Postdoctoral Research, 1, 1-8 (2013).
[14] H. Zheng, Y. Liu and Z. Chen^. Fast Motion of Plants: from Biomechanics to Biomimetics. Journal of Postdoctoral Research, 40, 50 (2013).
[13] Z. Chen*^, C. Majidi, D.J. Srolovitz and M. Haataja. Continuum Elasticity Theory Approach for Spontaneous Bending and Twisting of Ribbons Induced by Mechanical Anisotropy. arXiv preprint arXiv:1209.3321 (2012).
[12] Z. Chen*^, Q. Guo, C. Majidi, W. Chen, D.J. Srolovitz and M. Haataja. Nonlinear geometric effects in mechanical bistable morphing structures. Physical Review Letters, 109, 114302 (2012).
[11] M.A. Wyczalkowski*, Z. Chen*^, B.A. Filas, V.D. Varner and L.A. Taber. Computational Models for Mechanics of Morphogenesis. Birth Defects Research Part C: Embryo Today: Reviews, 96, 132-152 (2012).
[10] W.L. Shan, Z. Chen, C.P. Broedersz, A.A. Gumaste, W.O. Soboyejo, and C.P. Brangwynne. Attenuated short wavelength buckling and force propagation in a biopolymer-reinforced rod. Soft Matter, 9, 194-199 (2012).
[9] Z. Chen, C. Majidi, D.J. Srolovitz and M. Haataja^. Tunable Helical Ribbons. Applied Physics Letters, 98, 011906 (2011).
[8] C. Majidi, Z. Chen, D.J. Srolovitz and M. Haataja^. Spontaneous Bending of Piezoelectric Nanoribbons: Mechanics, Polarization and Space Charge Coupling. Journal of the Mechanics and Physics of Solid, 58, 73-85 (2010).
[7] Z. Chen, K.T. Chu, DJ.J. Srolovitz, J.M. Rickman and M.P. Haataja^. Dislocation climb strengthening in Systems with Immobile Obstacles: Three-dimensional levels-set simulation study. Physical Review B, 81, 054104 (2010).
[6] Z. Chen, H. Zheng and Y. Rong^. On the Determination of Shear Angle in Martensitc Transformations. Materials Science and Engineering A, 457, 380-384 (2007).
[5] H. Zheng, Z. Chen and Y. Rong^. The Improvement of Calculating γ (fcc)→ ε (hcp) Martensitic Transformation Shear Angle. Journal of Shanghai Jiaotong University, 4, 017 (2007).
[4] C. Wen, B. Huang, Z. Chen and Y. Rong^. Martensite and its reverse transformation in nanocrystalline bulk Co. Materials Science and Engineering: A, 438, 420-426 (2006).
[3] C. Wen, Z. Chen, B. Huang and Y. Rong^. Nanocrystallization and magnetic properties of Fe-30 weight percent Ni alloy by surface mechanical attrition treatment. Metallurgical and Materials Transactions A, 37, 1413-1421 (2006).
[2] Z. Chen, Q. Liu, Q. Meng and Y. Rong^. Structural evolution and stability of mechanically alloyed Fe-Ni nanocrystalline. Journal of Central South University of Technology, 12, 389-392 (2005).