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We have developed a method that would allow for the fabrication of carbon aerogel (CA) spheres. The inverse phase suspension polymerization of resorcinol and formaldehyde monomers with Na2CO3 as a catalyst followed by supercritical drying was explored. The effects of the chemical formulation and processing procedures and the conditions of the structures of organic and related carbon aerogels were studied. The experimental results indicated that it was easy to avoid the accumulation of polymerization heat during gelation, and easy to take out the products from the reaction container, through this fabrication method. Sol-gel microspheres with diameters ranging from about 30-1000μm could be obtained. After drying the sol-gel spheres under alcohol supercritical drying conditions, aerogel spheres with a bulk density of 0.8-1.0 g/cm3were prepared, and by subsequently pyrolyzing them, CA spheres with surface areas of 250-650 m2/g were obtained. The resultant CA spheres could be used as the electrode materials of supercapacitors. The specific capacitance of the CA spheres was as high as 215 F/g, and the equivalent series resistance at 48 Hz was about 1 Ω. 相似文献
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T. Koga X. Sun S.B. Cronin M.S. Dresselhaus K.L. Wang G. Chen 《Journal of Computer-Aided Materials Design》1998,4(3):175-182
Enhanced thermoelectric performance, expressed in terms of the thermoelectric figure of merit (ZT), has been predicted theoretically for low-dimensional electronic systems under appropriate experimental conditions. Enhanced ZT has been observed experimentally within 2D quantum wells of PbTe, and good agreement between theory and experiment has been obtained. The advantages of low-dimensional systems for thermoelectric applications are described, and prospects for further enhancement of ZT are discussed. 相似文献
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Dresselhaus MS Dresselhaus G Charlier JC Hernández E 《Philosophical transactions. Series A, Mathematical, physical, and engineering sciences》2004,362(1823):2065-2098
A review of the electronic, thermal and mechanical properties of nanotubes is presented, with particular reference to properties that differ from those of the bulk counterparts and to potential applications that might result from the special structure and properties of nanotubes. Both experimental and theoretical aspects of these topics are reviewed. 相似文献
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Jorio A Saito R Dresselhaus G Dresselhaus MS 《Philosophical transactions. Series A, Mathematical, physical, and engineering sciences》2004,362(1824):2311-2336
The basic concepts and characteristics of Raman spectra from single-wall carbon nanotubes (SWNTs, both isolated and bundled) are presented. The physical properties of the SWNTs are introduced, followed by the conceptual framework and characteristics of their Raman spectra. Each Raman feature, namely the radial breathing mode, the tangential G band, combination modes and disorder-induced bands are discussed, addressing their physical origin, as well as their capability for characterizing SWNT properties. 相似文献
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Burroughs C.J. Benz S.P. Dresselhaus P.D. Waltrip B.C. Nelson T.L. Yonuk Chong Williams J.M. Henderson D. Patel P. Palafox L. Behr R. 《IEEE transactions on instrumentation and measurement》2007,56(2):289-294
We are implementing a new standard for 60 Hz power measurements based on precision sinusoidal reference voltages from two independent programmable Josephson voltage standards (PJVS): one for voltage and one for current. The National Institute of Standards and Technology PJVS systems use series arrays of Josephson junctions to produce accurate quantum-based DC voltages. Using stepwise-approximation synthesis, the PJVS systems produce sinewaves with precisely calculable RMS voltage and spectral content. We present measurements and calculations that elucidate the sources of error in the RMS voltage that are intrinsic to the digital-synthesis technique and that are due to the finite rise times and transients that occur when switching between the discrete voltages. Our goal is to reduce all error sources and uncertainty contributions from the PJVS synthesized waveforms to a few parts in 10 7 so that the overall uncertainty in the AC-power standard is a few parts in 106 相似文献
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E. Rogacheva O. Vodorez O. Nashchekina A. Sipatov A. Fedorov S. Olkhovskaya M. S. Dresselhaus 《Journal of Electronic Materials》2010,39(9):2085-2091
The room-temperature dependences of the Seebeck coefficient, Hall coefficient, electrical conductivity, charge carrier mobility,
and thermoelectric power factor were obtained as a function of thickness d (d = 8 nm to 400 nm) of PbTe epitaxial layers grown by thermal evaporation in vacuum of PbTe polycrystals doped with Na onto
(100)KCl surfaces and covered with an Al2O3 layer. Distinct oscillations in the d-dependences of the properties were observed and attributed to the size quantization of the energy spectra in PbTe layers.
The experimental values of the oscillation period are in good agreement with the results of theoretical calculations using
the effective-mass approximation and a model for a rectangular potential well with infinitely high walls. It follows from
the obtained results that quantization of the energy spectrum in PbTe thin-film structures occurs not only for the electron
gas but also for the hole gas. 相似文献