[1] Jia, Z, Yu, Y, Hou, S, *Wang L. Biomimetic architected materials with improved dynamic performance. Journal of the Mechanics and Physics of Solids 2019, 125, 178–197.
[2] Lu, Z., Ng, T W., *Yu, Y. Fast modeling of clam-shell drop morphologies on cylindrical surfaces. International Journal of Heat and Mass Transfer, 2016, 93, 1132-1136.
[3] Chong, M., Cheng, M., Katariya, M., Muradoglu, M., Cheong, B., Zahidi, A., Yu, Y., Liew, O. W., *Ng, T. W. Liquid-body resonance while contacting a rotating superhydrophobic surface. European Physical Journal E. 2015, 38(11), 119.
[4] Niu J, Wang X W, *Yu Y. Rupture distance of the liquid bridge between two flat substrates with different wetting properties. Journal of Computational and Theoretical Nanoscience, 2014, 11, 625-628.
[5] Huynh S H, Wang J, Yu Y, and *Ng T W. Hydrostatic Pressure Effect on Micro Air Bubbles Deposited on Surfaces with a Retreating Tip. Langmuir, 2014, 30: 6095-6103.
[6] *Yu Y, Wu Q, Zhang K and Ji B H. Effect of triple-phase contact line on contact angle hysteresis. Science China (Physics, Mechanics and Astronomy), 2012, 55:1045-1050.
[7] Wang X W and *Yu Y. Analysis of the shape of heavy droplets on flat and spherical surface. Science China (Physics, Mechanics and Astronomy), 2012, 55:1118-1124.
[8] *Yu Y, Wu Q and Wang X W. Wetting behavior between droplets and dust. Chinese Physics Letters, 2012, 29:026802.
[9] *Yu Y, Wang X W and Ng T W. Modeling the liquid filling in capillary well microplates for analyte preconcentration. Journal of Colloid and Interface Science, 2012, 376: 269-273.
[10] *Yu Y, Wang X W and Wu Q. Rupture distance of liquid bridge based on Surface Evolver simulation. Journal of Mechanical Biomechanics, 2011, 26:436-440.
[11] Cheong B H P, *Ng T W, Yu Y, and Liew O W. Using the Meniscus in a Capillary for Small Volume Contact Angle. Langmuir, 2011, 27: 11925-11929.
[12] Lu G, Tan H Y, Neild A, Liew O W, Yu Y and *Ng T W. Liquid filling in standard circular well microplates. Journal of Applied Physics. 2010, 108: 124701.