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63篇 您的检索式:作者名="Javey"
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1Challenges and Prospects of Nanopillar-Based Solar Cells显示文摘Materials and device architecture innovations are essential for further enhancing the performance of solar cells while potentially enabling their large-scale integration as a viable source of alternative energy.In this regard,tremendous research has been devoted in recent years with continuous progress in the field.In this article,we review the recent advancements in nanopillar-based photovoltaics while discussing the future challenges and prospects.Nanopillar arrays provide unique advantages over thin films in the areas of optical properties and carrier collection,arising from their three-dimensional geometry.The choice of the material system,however,is essential in order to gain the advantage of the large surface/interface area associated with nanopillars with the constraints different from those of the thin film devices.Zhiyong Fan Daniel J.Ruebusch Asghar A.Rathore Rehan Kapadia Onur Ergen Paul W.Leu Ali Javey 2009Nano Research2009,2,11:5
2Synthesis,Contact Printing,and Device Characterization of Ni-Catalyzed,Crystalline InAs Nanowires显示文摘InAs nanowires have been actively explored as the channel material for high performance transistors owing to their high electron mobility and ease of ohmic metal contact formation.The catalytic growth of nonepitaxial InAs nanowires,however,has often relied on the use of Au colloids which is non-CMOS compatible.Here,we demonstrate the successful synthesis of crystalline InAs nanowires with high yield and tunable diameters by using Ni nanoparticles as the catalyst material on amorphous SiO_(2) substrates.The nanowires show superb electrical properties with field-effect electron mobility~2700 cm^(2)/Vs and ION/IOFF>10^(3).The uniformity and purity of the grown InAs nanowires are further demonstrated by large-scale assembly of parallel arrays of nanowires on substrates via the contact printing process that enables high performance,“printable”transistors,capable of delivering 510 mA ON currents(~400 nanowires).Alexandra C.Ford Johnny C.Ho Zhiyong Fan Onur Ergen Virginia Altoe Shaul Aloni Haleh Razavi Ali Javey 2008Nano Research2008,1,1:3
3High performance n-type carbon nanotube field-effect transistors with chemically doped contacts 显示文摘JAVEY A TU R FARMER DB 2005Nano Lett2005,5,2:1
4High performance n type carbon nanotube field effect transistors with chemically doped contacts显示文摘JAVEY A TU R FARMER DB 2005Nano Letters2005,5,2:1
5Carbon nanotube field-effect transistors with integrated ohmic contacts and high-K gate dielectrics 显示文摘JAVEY A GUO J DAMON B 2004Nano Letters2004,4,3:1
6Ballistic Carbon Nanotube Field-Effect Transistors显示文摘Javey A Guo J Wang Q Lundstrom M and Dai H 2003Letters to Nature2003,424,:1
7Ballistic Carbon NanotubeField-Effect Transistors显示文摘Javey A Guo J Wang Q 2003Nature2003,424,:1
8High Performance N-type Carbon Nanotube Field-effect Transistors with Chemically Doped Contacts显示文摘Javey A Tu R Farmer D 2005Nano Lett2005,5,2:1
9High-K Dielectrics for Ad-vanced Carbon-Nanotube Transistors and Logic Gates显示文摘Javey A Kim H Brink M 2002Na-ture Mater2002,1,:1
10Polymer functionalization for air-stable n-type carbon nanotube field-effect transistors显示文摘SHIM M JAVEY A SHI KAM N W 2001J Am Chem Soc2001,123,11:1
11Ballistic carbon nanotube field-effect transistors 显示文摘Javey A Guo J Wang Q 2003Nature2003,424,6949:1
12Germanium nanowire field-effect transistors with Si02 and high-rHf02 gate dielectrics 显示文摘Wang D W Wang Q Javey A 2003Appl Phys Lett2003,83,:1
13Carbon nanotubetransistor arrays for multistage complementary logic and ringoscillators显示文摘JAVEY A WANG Q URAL A LI Y DAI H 2002Nano Letters2002,2,9:1
14Ballistic Carbon Nanotube Transistors显示文摘Javey A Guo J Wang Q 2003Nature2003,424,:1
15Ballistic carbon nanotube field-effect transistors 显示文摘JAVEY A GUO J WANG Q 2003Nature2003,424,:1
16Methiillin-resistant Staphylo-coccuss epidermidis isolation from the viterctomy specimen fourhours after initial treatment with vancomycin and ceftazidime 显示文摘Javey G Schwartz SG Moshfeqhi AA 2010Clin Ophthalmol2010,4,4:1
17Carbon nanotube transistor arrays for multistage complementary logic and ring oscillators显示文摘Javey A Wang Q Ural A 2002Nano Lett2002,2,:1
18Polymer functionalization for air-stable n-type carbon nanotube field-effect transistors 显示文摘Shim M Javey A Kam N W S 2001JAm Chem Soc2001,123,11:1
19Wafer-Scale Assembly of Highly Ordered Semiconductor Nanowire Arrays by Contact Pringting 显示文摘FAN Z Y Johnny C JAVEY A 2008NanoLetters2008,8,1:1
20Large scale, Highly ordered assembly of nanowire parallel arrays by differential roll printing 显示文摘YERUSHALMI R FAN Z Y JAVEY A 2007Applied Physics Letters2007,91,20:1
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