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Original Articles

Single-Phase Forced Convection in Microchannels with Carbon Nanotubes for Electronics Cooling Applications

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Pages 251-271 | Received 03 Mar 2008, Accepted 18 Apr 2008, Published online: 04 Sep 2008

REFERENCES

  • L. Wilson, International Technologies Roadmap for Semiconductors http:/public.itrs.net (Accessed: 10 August 2007 ).
  • Tuckerman , D.B. and Pease , R.F. 1981 . High Performance Heat Sinking for VLSI . IEEE Electron Device Letters , 2 ( 5 ) : 126 – 129 .
  • Iijima , S. 2002 . Carbon Nanotubes: Past, Present, and Future . Physica B: Condensed Matter , 323 ( 1–4 ) : 1 – 5 .
  • Marquis , F.D.S. 2007 . Carbon Nanotube Nano Composites for Multifunctional Applications . Materials Science Forum , 561–565 ( Pt. 2 ) : 1397 – 1402 .
  • Margulis , A. VI and Sizikova , T.A. 1998 . Theoretical Study of Third-Order Nonlinear Optical Response of Semiconductor Carbon Nanotubes . Physica B , 245 ( 2 ) : 173 – 189 .
  • Jakaboski , B.E. , Joshi , Y. and Rightley , M. 2004 . Forced Convection in a Microchannel Heat Sink Using Carbon Nanotubes for Heat Transfer Enhancement . Proceedings of the ASME Heat Transfer Division , 375 ( 5 ) : 227 – 233 .
  • Roumanie , M. , Delattre , C. , Marchand , G. , Meille , V. , de Bellefon , C. , Pijolat , C. , Tournier , G. and Pouteau , P. 2007 . Enhancing Surface Activity in Silicon Microreactors: Use of Black Silicon and Alumina as Catalyst Supports for Chemical and Biological Applications . Chemical Engineering Journal , 135 ( Suppl. 1 ) : S317 – S326 .
  • Mo , Z. , Andersen , J. and Liu , J. . Integrating Nano Carbontubes with Microchannel Cooler . Proceedings of the Sixth IEEE CPMT Conference on High Density Microsystem Design and Packaging and Component Failure Analysis . pp. 373 – 376 . Piscataway, New Jersey : Institute of Electrical and Electronics Engineers, Inc. .
  • Mo , Z. , Morjan , R. , Andersen , J. , Campbell , E.E.B. and Liu , J. . Integrated Nanotube Microcooler for Microelectronics Applications . Proceedings of the 55th Electronic Components and Technology Conference . Vol. 1 , pp. 51 – 54 . Piscataway, New Jersey : Institute of Electrical and Electronics Engineers, Inc. .
  • Gjerde , K. , Schurmann , T. , Teo , K.B.K. , Aono , M. , Milne , W.I. and Boggild , P. 2005 . Functionalisation of Microfluidic Channels with In Situ Grown Carbon Nanotubes . Materials Research Society Symposium Proceedings, Micro- and Nanosystems , 872 : 371 – 375 .
  • Joseph , P. , Cottin-Bizonne , C. , Benoit , J.M. , Ybert , C. , Journet , C. , Tabeling , P. and Bocquet , L. 2006 . Slippage of Water Past Superhydrophobic Carbon Nanotube Forests in Microchannels . Physical Review Letters , 97 ( 15 ) : 156104-1 – 156104-4 .
  • Stadermann , M.A. , McBrady , D. , Dick , B. , Reid , V.R. , Noy , A. , Synovec , R.E. and Bakajin , O. 2006 . Ultrafast Gas Chromatography on Single-Wall Carbon Nanotube Stationary Phases in Micro Fabricated Channels . Analytical Chemistry , 78 ( 16 ) : 5639 – 5644 .
  • Huxtable , S.T. , Cahill , D.G. , Shenogin , S. , Xue , L. , Ozisik , R. , Barone , P. , Usrey , M. , Strano , M.S. , Siddons , G. , Shim , M. and Keblinski , P. 2003 . Interfacial Heat Flow in Carbon Nanotube Suspensions . Nature Materials , 2 ( 11 ) : 731 – 734 .
  • Xu , Y. , Zhang , Y. , Suhir , E. and Wang , X. 2006 . Thermal Properties of Carbon Nanotube Arrays Used for Integrated Circuit Cooling . Journal of Applied Physics , 100 : 074302-1 – 074302-5 .
  • Hu , X.J. , Panzer , M.A. and Goodson , K.E. 2007 . Infrared Microscopy Thermal Characterization of Opposing Carbon Nanotube Arrays . Journal of Heat Transfer , 129 ( 1 ) : 91 – 93 .
  • Cola , B.A. , Xu , J. , Cheng , C. , Xu , X. and Fisher , T.S. 2007 . Photoacoustic Characterization of Carbon Nanotube Array Thermal Interfaces . Journal of Applied Physics , 101 : 054313-1 – 054313-9 .
  • Patankar , S.V. and Spalding , D.B. 1972 . A Calculation Procedure for Heat, Mass, and Momentum Transfer in Three-Dimensional Parabolic Flows . International Journal of Heat and Mass Transfer , 15 : 1787 – 1806 .
  • Incropera , F.P. and Dewitt , D.P. 1999 . Fundamentals of Heat and Mass Transfer , 5th , New York : John Wiley and Sons .
  • Phillips , R.J. , Glicksman , L.R. and Larson , R. 1988 . “ Forced-Convection, Liquid-Cooled, Microchannel Heat Sinks for High-Power-Density Microelectronics ” . In Cooling Technology for Electronic Equipment Edited by: Aung , W. 295 – 316 . Hemisphere, New York
  • Phillips , R.J. 1990 . “ Microchannel Heat Sinks ” . In Advances in Thermal Modeling of Electronic Components and Systems , Edited by: Bar-Cohen , A. and Kraus , A.D. Vol. 2 , 109 – 184 . New York : ASME Press .
  • Moffat , R.J. 1983 . Using Uncertainty Analysis in the Planning of an Experiment . Journal of Fluids Engineering , 107 ( 2 ) : 173 – 178 .
  • Moffat , R.J. 1982 . Contributions to the Theory of Single-Sample Uncertainty Analysis . Journal of Fluids Engineerings , 104 ( 2 ) : 250 – 260 .
  • Abernethy , R.B. , Benedict , R.P. and Dowdell , R.B. 1983 . ASME Measurement Uncertainty . Journal of Fluids Engineering , 107 ( 2 ) : 161 – 163 .
  • Kline , S.J. 1983 . The Purposes of Uncertainty Analysis . Journal of Fluids Engineering , 107 ( 2 ) : 153 – 160 .
  • Kline , S.J. and McClintock , F.A. 1953 . Describing Uncertainties in Single-Sample Experiments . Mechanical Engineering , 75 ( 1 ) : 3 – 8 .
  • Eisenhart , C. 1968 . Expression of the Uncertainties of Final Results . Science , 160 ( 3833 ) : 1201 – 1204 .
  • Zhimin , W. and Fah , C.K. . The Optimum Thermal Design of Microchannel Heat Sinks . Proceedings of the Electronic Packaging Technology Conference . pp. 123 – 129 . Piscataway, New Jersey : Institute of Electrical and Electronics Engineers, Inc. .

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