以通讯作者、第一作者在《Journal of the Mechanics and Physics of Solids》、《Journal of Fluid Mechanics》、《Physical Review Letters》、《Science Advances》、《Nature Communications》、《Nano Letters》、《ACS Nano》等国际力学和综合类学术刊物上发表多篇论文,共发表SCI论文90余篇。研究成果曾被选入《物理评论快报》(PRL)编辑推荐 (Editors’ Suggestion) 并被《自然》(Nature)作为研究亮点 (Research Highlights) 报道。合译表界面力学领域知名法文专著《毛细和润湿现象》、《物理流体力学》。部分代表论文如下(*代表通讯作者):
[1] Chen Ma, Cunjing Lv.* Chimney instability of rotating Leidenfrost drops, Journal of Fluid Mechanics (in press, 2025).
[2] Songlin Shi, Chen Ma, Steffen Hardt,* Cunjing Lv.* Leidenfrost propulsion on symmetric textured surface via spontaneous symmetry breaking, Science Advances (in press, 2025).
[3] Hongcheng Du, Kun Li, Jinhong Yang, Pengfei Hao, Xingshi Gu, Xian Yi, Zhiping Xu,* Cunjing Lv.* Coupling of low elastic modulus with porosity makes extreme low ice adhesion strength, Journal of the Mechanics and Physics of Solids 200, 106147 (2025).
[4] Vatsal Sanjay,* Bin Zhang,* Cunjing Lv,* Detlef Lohse.* The role of viscosity on drop impact forces on non-wetting surfaces, Journal of Fluid Mechanics 1004, A6 (2025).
[5] Haixiang Zhang, Hongcheng Du, Dongyu Zhu, Huanyu Zhao, Xiwen Zhang, Feng He, Lin Wang, Cunjing Lv,* Pengfei Hao.* Ice adhesion properties on micropillared superhydrophobic surfaces, ACS Applied Materials & Interfaces 16(8), 11084-11093 (2024).
[6] Chen Ma, Zhiping Yuan, Wei Tong, Lin Wang, Cunjing Lv,* Quanshui Zheng. Modelling ridge enhanced droplet jumping with varying mismatches and scales for vapor chamber performance estimations, International Journal of Heat and Mass Transfer 217, 124668 (2023).
[7] Huanlei Zhao, Bin Zhang, Cunjing Lv.* Edge-driven collapse of fluid holes, Journal of Fluid Mechanics 973, A18 (2023).
[8] Bin Zhang, Chen Ma, Huanlei Zhao, Yinggang Zhao, Pengfei Hao, Xi-Qiao Feng, Cunjing Lv.* Effect of wettability on the impact force of water drops falling on flat solid, Physics of Fluids 35(11), 112111 (2023).
[9] Bin Zhang, Vatsal Sanjay, Songlin Shi, Yinggang Zhao, Cunjing Lv,* Xi-Qiao Feng, Detlef Lohse. Impact forces of water drops falling on superhydrophobic surfaces, Physical Review Letters 129(10), 104501 (2022). (Editors’ Suggestion, Highlighted by Nature)
[10] Jing Lou, Songlin Shi, Chen Ma, Xiaohuan Zhou, Dong Huang, Quanshui Zheng, Cunjing Lv.* Polygonal non-wetting droplets on microtextured surfaces, Nature Communications 13(1), 2685 (2022).
[11] Cong Liu, Chenguang Lu, Zichao Yuan, Cunjing Lv,* Yahua Liu.* Steerable drops on heated concentric microgroove arrays, Nature Communications 13(1), 3141 (2022).
[12] Chen Ma,* Li Chen, Lin Wang, Wei Tong, Chenlei Chu, Zhiping Yuan,* Cunjing Lv,* Quanshui Zheng.* Condensation droplet sieve, Nature Communications 13(1), 5381 (2022).
[13] Haiyang Zhan, Chenguang Lu, Cong Liu, Zuankai Wang, Cunjing Lv,* Yahua Liu.* Horizontal motion of a superhydrophobic substrate affects the drop bouncing dynamics, Physical Review Letters 126(23), 234503 (2021).
[14] Cunjing Lv, Subramanyan N. Varanakkottu, Steffen Hardt.* Liquid plug formation from heated binary mixtures in capillary tubes, Journal of Fluid Mechanics 889, A 15 (2020).
[15] Songlin Shi, Cunjing Lv,* Quanshui Zheng.* Drop impact on two-tier monostable superrepellent surfaces. ACS Applied Materials & Interfaces 11(46), 43698-43707 (2019).
[16] Cunjing Lv, Subramanyan N. Varanakkottu, Tobias Baier, Steffen Hardt.* Controlling the trajectories of nano/micro particles using light-actuated Marangoni flow. Nano Letters 18(11), 6924-6930 (2018).
[17] Cunjing Lv, Michael Eigenbrod, Steffen Hardt.* Stability and collapse of holes in liquid layers. Journal of Fluid Mechanics 855, 1130-1155 (2018).
[18] Cunjing Lv, Pengfei Hao,* Xiwen Zhang, Feng He. Dewetting transitions of dropwise condensation on nanotexture enhanced superhydrophobic surfaces. ACS Nano 9(12), 12311-12319 (2015).
[19] Cunjing Lv, Christophe Clanet, David Quéré.* Retraction of large liquid strips. Journal of Fluid Mechanics 778, R6 (2015).
[20] Cunjing Lv, Chao Chen, Yin-Chuan Chuang, Fan-Gang Tseng, Yajun Yin, Francois Grey, Quanshui Zheng.* Substrate curvature gradient drives rapid droplet motion. Physical Review Letters 113(2), 026101 (2014).