Integration of Carbon Nanotubes in Microsystems: Local Growth and Electrical Properties of Contacts
暂无分享,去创建一个
[1] J. Coleman,et al. A generic organometallic approach toward ultra-strong carbon nanotube polymer composites. , 2004, Journal of the American Chemical Society.
[2] S. Sze,et al. Metal‐Semiconductor Contacts , 2006 .
[3] Nan Yao,et al. Young’s modulus of single-walled carbon nanotubes , 1998 .
[4] Liwei Lin,et al. Local synthesis of silicon nanowires and carbon nanotubes on microbridges , 2003 .
[5] M. Cullinan,et al. Carbon nanotubes as piezoresistive microelectromechanical sensors: Theory and experiment , 2010 .
[6] C. M. Wolfe,et al. Physical Properties of Semiconductors , 1989 .
[7] M. P. Anantram,et al. Physics of carbon nanotube electronic devices , 2006 .
[8] Knut E. Aasmundtveit,et al. Diameter dependency for the electric-field-assisted growth of carbon nanotubes , 2013 .
[9] A. H. R. Palser,et al. Interlayer interactions in graphite and carbon nanotubes , 1999 .
[10] W. D. de Heer,et al. Carbon Nanotubes--the Route Toward Applications , 2002, Science.
[11] D. Austin,et al. Fabrication and Characterization of Carbon Nanofiber-Based Vertically Integrated Schottky Barrier Junction Diodes , 2003 .
[12] P.C.H. Chan,et al. Low-Resistance Carbon Nanotube Contact Plug to Silicon , 2009, IEEE Electron Device Letters.
[13] S. Iijima. Helical microtubules of graphitic carbon , 1991, Nature.
[14] E. Pop,et al. Thermal conductance of an individual single-wall carbon nanotube above room temperature. , 2005, Nano letters.
[15] Liwei Lin,et al. Room temperature local synthesis of carbon nanotubes , 2003, 2003 Third IEEE Conference on Nanotechnology, 2003. IEEE-NANO 2003..
[16] H. Grubin. The physics of semiconductor devices , 1979, IEEE Journal of Quantum Electronics.
[17] G. Bakan,et al. Numerical Modeling of Electrothermal Effects in Silicon Nanowires , 2008 .
[18] Knut E. Aasmundtveit,et al. Direct integration of carbon nanotubes in Si microstructures , 2012 .
[19] Eleanor E. B. Campbell,et al. Schottky barriers in carbon nanotube-metal contacts , 2011 .
[20] Franco Cacialli,et al. Work Functions and Surface Functional Groups of Multiwall Carbon Nanotubes , 1999 .
[21] Herbert Shea,et al. Single- and multi-wall carbon nanotube field-effect transistors , 1998 .
[22] Knut E. Aasmundtveit,et al. Local Synthesis of Carbon Nanotubes in Silicon Microsystems: The Effect of Temperature Distribution on Growth Structure , 2013, Materials.
[23] Y. Zhou,et al. Design and Fabrication of Microheaters for Localized Carbon Nanotube Growth , 2008, 2008 8th IEEE Conference on Nanotechnology.
[24] Jae Do Lee,et al. Adsorption of NH3 and NO2 molecules on carbon nanotubes , 2001 .
[25] N. Olofsson,et al. In situ Raman studies of single-walled carbon nanotubes grown by local catalyst heating** , 2008 .
[26] E. Halvorsen,et al. Electrical control of synthesis conditions for locally grown CNTs on polysilicon microstructure , 2011, 2011 11th IEEE International Conference on Nanotechnology.
[27] T. Ebbesen. Physical Properties of Carbon Nanotubes , 1997 .
[28] E. Halvorsen,et al. Observations on defects and contact modes for locally grown CNTs , 2012, 2012 12th IEEE International Conference on Nanotechnology (IEEE-NANO).
[29] G. Duesberg,et al. Carbon nanotubes for interconnect applications , 2002, IEDM Technical Digest. IEEE International Electron Devices Meeting, 2004..
[30] D. Engstrøm,et al. Vertically aligned CNT growth on a microfabricated silicon heater with integrated temperature control—determination of the activation energy from a continuous thermal gradient , 2010 .
[31] Valery M. Dubin,et al. Effects of local Joule heating on the reduction of contact resistance between carbon nanotubes and metal electrodes , 2007 .
[32] Liwei Lin,et al. Localized heating induced chemical vapor deposition for one-dimensional nanostructure synthesis , 2010 .
[33] J.J. Ebers. P-N junctions , 1959, IRE Transactions on Electron Devices.