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1
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33744827439
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Enhanced Thermal Contact Conductance using Carbon Nanotube Array Interfaces
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Xu, J., and Fisher, T. S., 2006, "Enhanced Thermal Contact Conductance using Carbon Nanotube Array Interfaces," IEEE Trans. Comp. Pack. Tech. 29(2), pp. 261-267.
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IEEE Trans. Comp. Pack. Tech
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, pp. 261-267
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Xu, J.1
Fisher, T.S.2
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2
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33846315066
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3-omega Measurements of Vertically Oriented Carbon Nanotubes on Silicon
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Xu, J., Padilla, A. A., Xu, J., Fisher, T. S., and Goodson, K. E., 2006, "3-omega Measurements of Vertically Oriented Carbon Nanotubes on Silicon," ASME J. Heat Transf. 128, pp. 1109-1113.
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ASME J. Heat Transf
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Xu, J.1
Padilla, A.A.2
Xu, J.3
Fisher, T.S.4
Goodson, K.E.5
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3
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33947303843
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Photoacoustic Characterization of Carbon Nanotube Array Interfaces
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Cola, B. A., Xu, J., Cheng, C., Hu, H., Xu, X., and Fisher, T. S., 2007, "Photoacoustic Characterization of Carbon Nanotube Array Interfaces," J. Appl. Phys. 101, 054313.
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J. Appl. Phys
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Cola, B.A.1
Xu, J.2
Cheng, C.3
Hu, H.4
Xu, X.5
Fisher, T.S.6
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4
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34247106303
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Dense Vertically Aligned Multiwalled Carbon Nanotube Arrays as Thermal Interface Materials
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Tong, T., Zhao, Y., Delzeit, L., Kashani, A., Meyyappan, M., and Majumdar, A., 2007, "Dense Vertically Aligned Multiwalled Carbon Nanotube Arrays as Thermal Interface Materials," IEEE Trans. Comp. Pack. Technol. 30(l), pp. 92-99.
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IEEE Trans. Comp. Pack. Technol
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Tong, T.1
Zhao, Y.2
Delzeit, L.3
Kashani, A.4
Meyyappan, M.5
Majumdar, A.6
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5
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34848925119
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Dendrimer-assisted Controlled Growth of Carbon Nanotubes for Enhanced Thermal Interface Conductance
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Amama, P. B., Cola, B. A., Sands, T. D., Xu, X., Fisher, T. S., 2007, "Dendrimer-assisted Controlled Growth of Carbon Nanotubes for Enhanced Thermal Interface Conductance," Nanotechnology 18, 385303.
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Nanotechnology
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Amama, P.B.1
Cola, B.A.2
Sands, T.D.3
Xu, X.4
Fisher, T.S.5
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6
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10844240426
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Improvement of Thermal Contact Resistance by Carbon Nanotubes and Nanofibers
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Chuang. H. F., Cooper, S. M., Meyyappan, M., and Cruden, B. A., 2004, "Improvement of Thermal Contact Resistance by Carbon Nanotubes and Nanofibers," J. Nanoscience and Nanotechnologv 4, pp. 964-967.
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J. Nanoscience and Nanotechnologv
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Chuang, H.F.1
Cooper, S.M.2
Meyyappan, M.3
Cruden, B.A.4
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7
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10844277456
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Thermal Interface Properties of Cu-filled Vertically Aligned Carbon Nanofiber Arrays
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Ngo, Q., Curden, B. A., Cassell, A. M., Walker, M. D., Ye, Q., Koehne, J. E., Meyyappan, M., Li, J., and Yang, C. Y., 2004, "Thermal Interface Properties of Cu-filled Vertically Aligned Carbon Nanofiber Arrays," Nano Left. 4, pp. 2403-2407.
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Nano Left
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Ngo, Q.1
Curden, B.A.2
Cassell, A.M.3
Walker, M.D.4
Ye, Q.5
Koehne, J.E.6
Meyyappan, M.7
Li, J.8
Yang, C.Y.9
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8
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33749987760
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Thermal Properties of Carbon Nanotube Array used for Integrated Circuit Cooling
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Xu, Y., Zhang, Y., Suhir, E., and Wang, X., 2006, "Thermal Properties of Carbon Nanotube Array used for Integrated Circuit Cooling," J. Appl. Phys. 100, 074302.
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J. Appl. Phys
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Xu, Y.1
Zhang, Y.2
Suhir, E.3
Wang, X.4
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9
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33847677981
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Increased Real Contact in Thermal Interfaces: A Carbon Nanotube/foil Material
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Cola, B. A., Xu, X., and Fisher, T. S., 2007, "Increased Real Contact in Thermal Interfaces: A Carbon Nanotube/foil Material," Appl. Phys. Lett. 90, 093513.
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Appl. Phys. Lett
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Cola, B.A.1
Xu, X.2
Fisher, T.S.3
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10
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Xu, J., and Fisher, T. 5., 2006, Enhancement of Thermal Interface Materials with Carbon Nanotube Arrays, Int. J. Heat Mass Trans. 49, pp. 1658-1666.
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Xu, J., and Fisher, T. 5., 2006, "Enhancement of Thermal Interface Materials with Carbon Nanotube Arrays," Int. J. Heat Mass Trans. 49, pp. 1658-1666.
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11
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40949086332
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Thermal Boundary Resistance and Thermal Conductivity of Multiwalled Carbon Nanotubes
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Prasher, R., 2008, "Thermal Boundary Resistance and Thermal Conductivity of Multiwalled Carbon Nanotubes," Phys. Rev. B 77, 075424.
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Phys. Rev. B
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Prasher, R.1
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12
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26644474104
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Maschmann, M. R., Amama, P. B., Goyal, A., Iqbal, Z., Gat, R., and Fisher, T. 5., 2006, Parametric Study of Synthesis Conditions in Plasma-enhanced CVD of High-quality Single-walled Carbon Nanotubes, Carbon 44, pp. 10-18.
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Maschmann, M. R., Amama, P. B., Goyal, A., Iqbal, Z., Gat, R., and Fisher, T. 5., 2006, "Parametric Study of Synthesis Conditions in Plasma-enhanced CVD of High-quality Single-walled Carbon Nanotubes," Carbon 44, pp. 10-18.
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13
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51349103197
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Carbon Nanotube Array Thermal Interfaces for High-temperature Silicon Carbide Devices, Nano and Micro Therm. Eng
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accepted for publication
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Cola, B. A., Capano, M. A., Amama, P. B., Xu, X., and Fisher, T. S., 2008, "Carbon Nanotube Array Thermal Interfaces for High-temperature Silicon Carbide Devices," Nano and Micro Therm. Eng., accepted for publication.
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Cola, B.A.1
Capano, M.A.2
Amama, P.B.3
Xu, X.4
Fisher, T.S.5
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14
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0003178160
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Generalized Theory of the Photoacoustic Effect in a Multilayer Material
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Hu, H., Wang, X., Xu, X., 1999, "Generalized Theory of the Photoacoustic Effect in a Multilayer Material," J. Appl. Phys. 86(7), pp. 3953-3958.
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J. Appl. Phys
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Hu, H.1
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15
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0035244407
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Photo-acoustic Measurement of Thermal Conductivity of Thin Films and Bulk Materi als
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Wang, X., Hu, H., and Xu, X., 2001, "Photo-acoustic Measurement of Thermal Conductivity of Thin Films and Bulk Materi als," ASME J. Heat Transf. 123, pp. 138-144.
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ASME J. Heat Transf
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Wang, X.1
Hu, H.2
Xu, X.3
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16
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84888272578
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Copper Foil/Carbon Nanotube Array Thermal Interface Materials used for CPU Burn-in
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Fremont, CA
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Cola, B. A., Maschmann, M. R., Henry, C., and Fisher, T. S., 2007, "Copper Foil/Carbon Nanotube Array Thermal Interface Materials used for CPU Burn-in," Proceedings of VMIC-VLSI/ULSI Multilevel Interconnect Conference, Fremont, CA.
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(2007)
Proceedings of VMIC-VLSI/ULSI Multilevel Interconnect Conference
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Cola, B.A.1
Maschmann, M.R.2
Henry, C.3
Fisher, T.S.4
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