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Bhushan, B., Tribology and Mechanics of Magnetic Storage Devices, Springer-Verlag, New York, 1990 (first edition) and 1996 (second edition).
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Bhushan, B. and Gupta, B. K., Handbook of Tribology: Materials, Coatings, and Surface Treatments, McGraw-Hill Book Company, New York, 1991; Reprint w/corrections, Krieger Publishing Company, Malabar, Florida, 1997.
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Bhushan, B., Mechanics and Reliability of Flexible Magnetic Media, Springer-Verlag, New York, first edition, 1992 and second edition, 2000.
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Bhushan, B., Principles and Applications of Tribology, John Wiley, New York, 1999.
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Bhushan, B., Introduction to Tribology, John Wiley, New York, 2002; Translated into Chinese by China Machine Press, 2006 (Translated by S. Ge).
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Nosonovsky, M. and Bhushan, B., Multiscale Dissipative Mechanisms and Hierarchical Surfaces: Friction, Superhydrophobicity, and Biomimetics, Springer-Verlag, Heidelberg, Germany, 2008; eBook; http://dx.doi.org/10.1007/978-3-540-78425-8.
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Bhushan, B., Biophysics of Human Hair: Structural, Nanomechanical and Nanotribological Studies, Springer-Verlag, Heidelberg, Germany, 2010; eBook: http://dx.doi.org/10.1007/978-3-642-15901-5.
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Bhushan, B., Micro/Nanotribology and its Applications, NATO ASI Series E: Applied Sciences-Vol. 330, Kluwer Academic Publishers, Dordrecht, Netherlands, 1997.
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Bhushan, B., Tribology Issues and Opportunities in MEMS, Kluwer Academic Publishers, Dordrecht, Netherlands, 1998.
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Bhushan, B., Tribology of Magnetic Storage Systems, The Institution of Mechanical Engineers, Professional Engineering Publishing Limited, London, U.K., 1998.
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Bhushan, B., Handbook of Micro/Nanotribology, CRC Press, Boca Raton, Florida, First ed., 1995; Translated into Korean by Korea Economic Daily & Business Publications, 2000; Second ed., 1999.
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Bhushan, B., Modern Tribology Handbook, Vol. 1 - Principles of Tribology; Vol. 2 - Materials, Coatings, and Industrial Applications, CRC Press, Boca Raton, Florida, 2001.
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Bhushan, B., Fundamentals of Tribology and Bridging the Gap Between the Macro- and Micro/ Nanoscales, NATO Science Series II: Mathematics, Physics and Chemistry - Vol. 10, Kluwer Academic Publishers, Dordrecht, Netherlands, 2001.
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Bhushan, B., Springer Handbook of Nanotechnology, Springer-Verlag, Heidelberg, Germany, first edition, 2004; second edition, 2007; Translated into Chinese by Science Press, 2009; Translated into Russian by Technosphera, 2010; third edition, 2010; eBook: http://www.springerlink.com/content/978-3-642-02524-2#section=691520&page=1.
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Bhushan, B., Nanotribology and Nanomechanics – An Introduction, Springer-Verlag, Heidelberg, Germany, first edition, 2005; second edition, 2008; third edition - Nanotribology and Nanomechanics I - Measurement Techniques and Nanomechanics, II - Nanotribology, Biomimetics, and Industrial Applications, 2011; eBook PartI: http://www.springerlink.com/content/978-3-642-15282-5#section=899690&page=1&locus=0;
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eBook Part II: http://www.springerlink.com/content/978-3-642-15262-7#section=899941&page=1.
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Bhushan, B. and Jung, Y. C., “Natural and Biomimetic Artificial Surfaces for Superhydrophobicity, Self-Cleaning, Low Adhesion, and Drag Reduction,” Progress in Materials Science 56, 1-108 (2011).
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Bhushan, B., “Biomimetics Inspired Surfaces for Drag Reduction and Oleophobicity/philicity,” (invited), Beilstein Journal of Nanotechnology 2, 66-84 (2011).
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Gupta, S., Wu, H.-H., Kwak, K. J., Casal, P., Nicholson III, T. R., Wen, X., Anisha, R., Bhushan, B., Berger, P. R., Lu, W., Brillson, L. J., and Lee, S. C., “Interfacial Design and Structure of Protein/Polymer Films on Oxidated AlGaN Surfaces,” Journal of Physics D: Applied Physics 44, 034010 (12 pp) (2011).
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Palacio, M.L.B., Schricker, S., and Bhushan, B., “Bioadhesion of Random, Diblock, and Triblock Copolymer Surfaces in Various Proteins and pH Conditions,” Journal of the Royal Society Interface 8, 630-640 (2011).
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Schricker, S., Palacio, M.L.B., and Bhushan, B., “Protein Adhesion of Block Copolymer Surfaces,” Colloid and Polymer Science 289, 219-225 (2011).
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Ebert, D. and Bhushan, B., “Durable Lotus-Effect Surfaces with Hierarchical Structuring Using Micro- and Nanosized Hydrophobic Silica Particles,” (submitted for publication).
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Mazumder, M. and Bhushan, B. “Propensity and Geometrical Distribution of Surface Nanobubbles: Effect of Electrolyte, Roughness, pH, and Substrate Bias,” (submitted for publication).
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Bhushan, B. and Pan, Y., “Role of Electric Field on Surface Wetting of Polystyrene Surface,” Langmuir (in press).
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Hunt, J. and Bhushan, B., “Nanoscale Biomimetics Studies of Salvinia Molesta for Micropattern Fabrication,” (submitted for publication).
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Sun, J. and Bhushan, B., “The Structure and Mechanical Properties of Dragonfly Wings and Their Role on Flyability,” (submitted for publication).
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Zaghloul, U., Bhushan, B., Pons, P., Papaioannou, G.J., Coccetti, F., and Plana, R., “On the Influence of Environment Gases, Relative Humidity and Gas Purification on Dielectric Charging/Discharging Processes in Electrostatically Driven MEMS/NEMS Devices,” Nanotechnology 22, 035705 (22 pp) (2011).
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Zaghloul, U., Wang, H., Papaioannou, G.J., Bhushan, B., Coccetti, F., Pons, P., and Plana, R., “Nanoscale Characterization of the Dielectric Charging Phenomenon in PECVD Silicon Nitride Thin Films with Various Interfacial Structures Based on Kelvin Probe Force Microscopy,” Nanotechnology 22, 205708 (25 pp.) (2011).
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Zaghloul, U., Bhushan, B., Pons, P., Papaioannou, G.J., Coccetti, F., and Plana, R., “Nanoscale Characterization of Different Stiction Mechanisms in Electrostatically Driven MEMS Devices Based on Adhesion and Friction Measurements,” Journal of Colloid and Interface Science 358, 1-13 (2011).
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Zaghloul, U., Bhushan, B., Coccetti, F., Pons, P. and Plana, R., “Kelvin Probe Force Microscopy Based Characterization Techniques Applied for Electrostatic MEMS and Thin Dielectric Films to Investigate the Dielectric Charging Phenomenon,” Journal of Vacuum Science and Technology A (in press).
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Zaghloul, U., Papaioanou, G.J., Bhushan, B., Coccetti, F., Pons, P. and Plana, R., “Dielectric Charging Phenomenon in Electrostatically Actuated MEMS Devices: Nanoscale Characterization Based on Kelvin Probe Force Microscopy,” International Journal of Microwave and Wireless Technologies (in press).
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Zaghloul, U., Papaioanou, G.J., Bhushan, B., Wang, H., Coccetti, F., Pons, P. and Plana, R., “Effect of Deposition Reactive Gas Ratio, RF Power and Substrate Temperature on the Charging/Discharging Processes in PECVD Silicon Nitride Films Based on Induced Surface Potential and Adhesive Force Measurements using Atomic Force Microscopy,” (submitted for publication).
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Zaghloul, U., Bhushan, B., Papaioanou, G.J., Coccetti, F., Pons, P. and Plana, R., “Dielectric Charging in Electrostatically Actuated MEMS: Novel Nanoscale Characterization Techniques Based on Induced Adhesive Force and Surface Potential Measurements using Atomic Force Microscopy,” (submitted for publication).
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Lee, H. and Bhushan, B., “Role of Surface Roughness and Lubricant Film Thickness in Nanolubrication of Sliding Components in Adaptive Optics,” Journal of Colloid and Interface Science 353, 574-581 (2011).
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Hunt, J. and Bhushan, B., “Device Level Studies of Adaptive Optics Sliding Components in Microprojectors,” (submitted for publication).
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Lee, H. and Bhushan, B., “Nanotribology of Polyvinylsidene Diflouride (PVDF) in the Presence of Electric Field,” Journal of Colloid and Interface Science (in press).
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Bhushan, B., “Nanotribological and Nanomechanical Properties of Skin with and without Cream Treatment using Atomic Force Microscopy and Nanoindentation: A Comprehensive Review,” (submitted for publication).
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Bhushan, B. and Tang, W., “Surface, Tribological, and Mechanical Characterization of Synthetic Skins for Tribological Applications in Cosmetic Science,” Journal of Applied Polymer Science 120, 2881-2890 (2011).
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Nagpure, S. C., Bhushan, B., and Babu, S.S., “Surface Potential Measurement of Aged Li-ion Batteries using Kelvin Probe Microscopy,” Journal of Power Sources 196, 1508-1512 (2011).
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Nagpure, S.C., Downing, R.G., Bhushan, B., Babu, S.S., and L. Cao, “Neutron Depth Profiling Technique for Studying Aging in Li-Ion Batteries,” Electrochimica Acta 56, 4735-4743 (2011).