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54篇 您的检索式:作者名="NIELSCH"
    题名 作者 年代 出处 被引量
1Thermoelectric properties of silicon and recycled silicon sawing waste显示文摘Large-scale-applicable thermoelectric materials should be both self-sustaining,in order to survive longterm duty cycles,and nonpolluting.Among all classes of known thermoelectric materials,these criteria reduce the available candidate pool,leaving silicon as one of the remaining options.Here we first review the thermoelectric properties of various silicon-related materials with respect to their morphologies and microstructures.We then report the thermoelectric properties of silicon sawing wastes recycled from silicon wafer manufacturing.We obtain a high power factor of~32 mWcm1 K2 at 1273 K with 6%phosphorus substitution in the Si crystal,a value comparable to that of phosphorus-doped silicongermanium alloys.Our work suggests the large-scale thermoelectric applicability of recycled silicon that would otherwise contribute to the millions of tons of industrial waste produced by the semiconductor industry.Ran He Wieland Heyn Felix Thiel Nicolas Perez Christine Damm Darius Pohl Bernd Rellinghaus Christian Reimann Maximilian Beier Jochen Friedrich Hangtian Zhu Zhifeng Ren Kornelius Nielsch Gabi Schierning 2019Journal of Materiomics2019,5,1:2
2Hexagonally arranged mono-disperse silver nNanowires with adjustable diameter and high aspect ratio 显示文摘JINSUB Choi GUIDO Sauer KORNELIUS Nielsch 2003Chemistry of materials2003,15,4:1
3Uniform nickel deposition into ordered alumina pores by pulsed electrodeposition显示文摘NIELSCH K M(U)LLER F LI A P 0,,08:1
4Hexagonally arranged monodisperse silver nanowires with adjustable diameter and high aspect ratio 显示文摘Choi J Saner G Nielsch K 2003Chemistry of materials2003,15,:1
5显示文摘Nielsch K Wehrspohn R B Kirschner J 2001Appl Phys Lett2001,79,:1
6Hexagonal pore arrays with a 50-420 nm interpore distance formed by self-organization in anodic alumina 显示文摘Li A P Muller A Birner K Nielsch K 1998Journal of Applied Physics1998,84,:1
7Preparation of size-classified PbS nanopartieles in the gas phase 显示文摘Krnis F E Nielsch K Fissan H 1998Applied Physics Letters1998,73,4:1
8显示文摘Nielsch K Wehrspohn R B Barthel J 2001Applied Physics Letters2001,79,:1
9Laser-interference lithography tailored for highly symmetrically arranged Zn0 nanowire arrays显示文摘Kim D S Ji R Fan H J Bertram F Scholz R Dadgar A Nielsch K Krost A Christen J.Gosele U Zacharias M 0,,01:1
10Thermoelectric nanostructures: from physical model systems towards nanograined composites显示文摘NIELSCH K BACHMANN J KIML1NG J 2011Advanced Energy Materials2011,1,:1
11Synthesis and surface engineering of complex nanostructures by atomic layer deposition显示文摘Knez M Nielsch K Niinist(o) L 0,,21:1
12Uniform nickel deposition into ordered alumina pores by pulsed electrodeposition显示文摘Nielsch K Muller F Li A P 2002Adv Mater2002,12,:1
13Self-ordering behavior of nanoporous anodic aluminum oxide (AAO) in malonic acid anodization 显示文摘Lee W Nielsch K Gosele U 2007Nanotechnology2007,18,47:1
14Self-ordering regimes of porous alumina: The 10 porosity rule显示文摘Nielsch K Choi J Schwirn K 2002Nano Letters2002,2,7:1
15High density hexagonal nickel nanowire array显示文摘Nielsch K Wehrspohn R B Barthel J 2002J Magn Magn Mater2002,249,12:1
16Hexagonally ordered 100 nm period nickel nanowires显示文摘Nielsch K Wehrspohn R B Barthel J 2001Appl Phys Lett2001,79,9:1
17Monodisperse diameter-modulated gold microwires显示文摘Matthias S Schilling J Nielsch K 2002Advanced Ma- terials2002,14,22:1
18Hexagonally ordered 100 nm period nickel nanowire arrays 显示文摘Nielsch K Wehrspohn R B Barthel J 2001Applied Physics Letters2001,79,9:1
19Magneticcylindrical nanowires with single modulated diameter显示文摘ALLENDE S ALTBIR D NIELSCH K 2009Phys Rev:B2009,80,:1
20Hexagonally ordered 100 nm period nickel nanowire arrays 显示文摘NIELSCH K WEHRSPOHN R B BARTHEL J 2001APL2001,79,9:1
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