Articles dans des revues avec comité de lecture (105)

  1. 79. Tortissier, G., Ginet, P., Jalabert, L., Lambert, P., Kim, B., & Fujita, H. (2011). CF4 plasma treatment-assisted inkjet printing for color pixel flexible display. Journal of micromechanics and microengineering, 21, 105021. doi:10.1088/0960-1317/21/10/105021
  2. 80. Park, J., Nishida, S., Lambert, P., Kawakatsu, H., & Fujita, H. (2011). High-resolution cantilever biosensor resonating at air–liquid in a microchannel. Lab on a chip. doi:10.1039/C1LC20608G
  3. 81. Sausse, M., & Lambert, P. (2011). Compact polymer multi-nozzles electrospray device with integrated microfluidic feeding system. Journal of electrostatics, 69(4), 313-319. doi:10.1016/j.elstat.2011.04.006
  4. 82. Renaudot, R., Agache, V., Daunay, B., Lambert, P., Kumemura, M., Fouillet, Y., Collard, D., & Fujita, H. (2011). Optimization of Liquid DiElectroPhoresis (LDEP) Digital Microfluidic Transduction for Biomedical Applications. Micromachines, 2, 258-273. doi:10.3390/mi2020258
  5. 83. Vandaele, V., Delchambre, A., & Lambert, P. (2011). Acoustic wave levitation: Handling of components. Journal of applied physics, 109, 124901. doi:10.1063/1.3594245
  6. 84. Xie, H., Lambert, P., & Régnier, S. (2011). Analysis of nanoscale mechanical grasping under ambient conditions. Journal of micromechanics and microengineering, 21, 045009. doi:10.1088/0960-1317/21/4/045009
  7. 85. Porta, M., Fantoni, G., & Lambert, P. (2010). An Integrated and Compact Device for Microassembly Exploiting Electrostatic Sorting and Capillary Grasping. C I R P - Journal of Manufacturing Science and Technology, 3(3), 185-190. doi:10.1016/j.cirpj.2010.09.002
  8. 86. Chau, A., Régnier, S., Delchambre, A., & Lambert, P. (2010). Theoretical and Experimental Study of the Influence of AFM Tip Geometry and Orientation on Capillary Force. Journal of adhesion science and technology, 24, 2499-2510. doi:10.1163/016942410X508307
  9. 87. Alvo, S., Lambert, P., Gauthier, M., & Régnier, S. (2010). A van der Waals Force Based Adhesion Model for Micromanipulation. Journal of adhesion science and technology, 24, 2415-2428. doi:10.1163/016942410X508334
  10. 88. Lambert, P., Mastrangeli, M., Valsamis, J.-B., & Degrez, G. (2010). Spectral analysis and experimental study of lateral capillary dynamics for flip-chip applications. Microfluidics and Nanofluidics, 9, 797-807.
  11. 89. Mastrangeli, M., Valsamis, J.-B., Van Hoof, C., Celis, J.-P., & Lambert, P. (2010). Lateral capillary forces of cylindrical fluid menisci: a comprehensive quasi-static study. Journal of micromechanics and microengineering, 20, 075041.
  12. 90. Sausse, M., Berke, P., Massart, T., Régnier, S., & Lambert, P. (2009). Variation of the Electrostatic Adhesion Force on a Rough Surface due to the Deformation of Roughness Asperities During Micromanipulation of a Spherical Rigid Body. Journal of adhesion science and technology, 23(9), 1303-1325. doi:10.1163/156856109X434026

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