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951.
Wafer bonded four‐junction GaInP/GaAs//GaInAsP/GaInAs concentrator solar cells with 44.7% efficiency
Frank Dimroth Matthias Grave Paul Beutel Ulrich Fiedeler Christian Karcher Thomas N. D. Tibbits Eduard Oliva Gerald Siefer Michael Schachtner Alexander Wekkeli Andreas W. Bett Rainer Krause Matteo Piccin Nicolas Blanc Charlotte Drazek Eric Guiot Bruno Ghyselen Thierry Salvetat Aurlie Tauzin Thomas Signamarcheix Anja Dobrich Thomas Hannappel Klaus Schwarzburg 《Progress in Photovoltaics: Research and Applications》2014,22(3):277-282
Triple‐junction solar cells from III–V compound semiconductors have thus far delivered the highest solar‐electric conversion efficiencies. Increasing the number of junctions generally offers the potential to reach even higher efficiencies, but material quality and the choice of bandgap energies turn out to be even more importance than the number of junctions. Several four‐junction solar cell architectures with optimum bandgap combination are found for lattice‐mismatched III–V semiconductors as high bandgap materials predominantly possess smaller lattice constant than low bandgap materials. Direct wafer bonding offers a new opportunity to combine such mismatched materials through a permanent, electrically conductive and optically transparent interface. In this work, a GaAs‐based top tandem solar cell structure was bonded to an InP‐based bottom tandem cell with a difference in lattice constant of 3.7%. The result is a GaInP/GaAs//GaInAsP/GaInAs four‐junction solar cell with a new record efficiency of 44.7% at 297‐times concentration of the AM1.5d (ASTM G173‐03) spectrum. This work demonstrates a successful pathway for reaching highest conversion efficiencies with III–V multi‐junction solar cells having four and in the future even more junctions. Copyright © 2014 John Wiley & Sons, Ltd. 相似文献
952.
Mathias JD Tessier-Doyen N Michaud P 《International journal of molecular sciences》2011,12(2):1175-1186
Developing biofoams constitutes a challenging issue for several applications. The present study focuses on the development of a chitosan-based biofoam. Solutions of chitosan in acetic acid were dried under vacuum to generate foams with high-order structures. Chitosan concentration influenced significantly the morphology of developed porosity and the organization of pores in the material. Physico-chemical characterizations were performed to investigate the effects of chitosan concentration on density and thermal conductivity of foams. Even if chitosan-based biofoams exhibit interesting insulating properties (typically around 0.06 W·m(-1)·K(-1)), it has been shown that their durabilities are limited when submitted to a wet media. So, a way of application consists to elaborate a ceramic material with open porosity from a slurry prepared with an organic solvent infiltrating the porous network of the foam. 相似文献
953.
Didier Saury Nicolas RougerFrancis Djanna François Penot 《International Communications in Heat and Mass Transfer》2011,38(6):679-687
A large-scale experimental setup is built and instrumented. It consists in a 4 m-high cavity with a horizontal cross-section equal to 0.86 × 1.00 m². Two opposite vertical walls are heated and cooled down; other walls (lateral walls, ceiling and floor) are made of insulating medium covered with a thin and low-emissivity film designed to minimize radiative effects into the cavity. The temperatures of active walls are imposed, constant and equally distributed around the ambient temperature in order to reduce heat losses. The temperature difference between the hot and cold walls is chosen to respect the Boussinesq approximation. Under these assumptions, Rayleigh number values up to 1.2 × 1011 (ΔT = 20 °C) can be obtained. The centre-symmetry is verified on the thermal stratification. Influence of the temperature difference and of wall emissivities on the stratification parameter (dimensionless vertical temperature gradient) is discussed. Velocity measurements allow the velocity field to be obtained and provide information on flows encountered in the cavity. Temperature measurements are also carried out in the whole cavity. In the paper, a complete experimental characterization is provided: airflow inside the cavity is analyzed and the Nusselt number along the hot and the cold wall is presented. 相似文献
954.
Dalmasso M Nicolas P Falentin H Valence F Tanskanen J Jatila H Salusjärvi T Thierry A 《International journal of food microbiology》2011,145(1):113-120
Propionibacterium freudenreichii is used as a ripening culture in Swiss cheese manufacture. This study investigates the molecular diversity and the population structure of this bacterium via multilocus sequence typing (MLST). Internal fragments of seven genes sequenced for 113 strains of different subspecies and origins allowed the resolution of 46 sequence types (STs) with occurrence frequencies ranging from 1 to 11. The core genome of the species harbours a low level of nucleotide polymorphism. In our data, single nucleotide polymorphisms account for only 2.28% of the concatenated sequences, and the average polymorphism rate in pairwise comparisons is 0.46%. The analyses reveal quantitatively comparable contributions of recombination and mutation in nucleotide changes at core genome loci along cell lineages. Remarkably, the STs exhibit little if any dairy biotope specialization. Phenotypic characterisation of the strains, based on their aptitude to use lactose and nitrate, shows that the two previously identified subspecies (freudenreichii and shermani) do not reflect the ancestral relationships in the P. freudenreichii population. The considerable phenotypic heterogeneity, found even at the ST level, suggests instead a history of recurrent switches between phenotypes. 相似文献
955.
The matched filter is a widely used detector in hyperspectral detection applications because of its simplicity and its efficiency in practical situations. We propose to estimate its performance with respect to the number of spectral bands. These spectral bands are selected thanks to a genetic algorithm in order to optimize the contrast between the target and the background in the detection plane. Our band selection method can be used to optimize not only the position but also the linewidth of the spectral bands. The optimized contrast always increases with the number of selected bands. However, in practical situations, the target spectral signature has to be estimated from the image. We show that in the presence of estimation error, the maximum number of bands may not always be the best choice in terms of detection performance. 相似文献
956.
Meier Beat; von Wartburg Philipp; Matter Sibylle; Rothen Nicolas; Reber Rolf 《Canadian Metallurgical Quarterly》2011,65(1):12
In retrospective memory, performance predictions have been found to enhance performance on subsequent memory tests. In prospective memory, the influence of metacognitive judgments on performance has not been investigated systematically. In the present study, 140 undergraduate students performed a complex short-term memory task that included a prospective memory task. Half of them gave performance predictions after the prospective memory task instructions. In addition, the specificity of the prospective memory task was manipulated by instructing participants either to perform an action when a word that belongs to the category of musical instruments was presented or to respond when the word “trumpet” was presented. The results showed that performance predictions enhanced performance, but only for the categorical task. Additional analyses of retrieval experience showed that performance predictions lead to an increase in search experiences while cue specificity was accompanied by an increase in pop up experiences. The results indicate that performance predictions can improve prospective performance and thus may be a valuable strategy for assisting prospective memory. (PsycINFO Database Record (c) 2011 APA, all rights reserved) 相似文献
957.
Stéphane Reculusa Matthias Heim Feng Gao Nicolas Mano Serge Ravaine Alexander Kuhn 《Advanced functional materials》2011,21(4):691-698
Porous gold structures with a well‐defined pore size and thickness are obtained through electrochemical deposition of gold in a colloidal crystal template synthesized by the Langmuir–Blodgett (LB) technique. Cylindrical gold wires were used as substrates for the LB deposition of successive monolayers of silica particles of various sizes, and the electrodeposition of gold through this inorganic template led to a homogeneous, porous metal structure. These materials were characterized through typical electrochemical experiments and showed high surface‐to‐volume ratios with promising features for their further use in miniaturized electrocatalytic devices. 相似文献
958.
959.
Truckenmüller R Giselbrecht S Rivron N Gottwald E Saile V van den Berg A Wessling M van Blitterswijk C 《Advanced materials (Deerfield Beach, Fla.)》2011,23(11):1311-1329
For roughly ten years now, a new class of polymer micromoulding processes comes more and more into the focus both of the microtechnology and the biomedical engineering community. These processes can be subsumed under the term "microthermoforming". In microthermoforming, thin polymer films are heated to a softened, but still solid state and formed to thin-walled microdevices by three-dimensional stretching. The high material coherence during forming is in contrast to common polymer microreplication processes where the material is processed in a liquid or flowing state. It enables the preservation of premodifications of the film material. In this progress report, we review the still young state of the art of microthermoforming technology as well as its first applications. So far, the applications are mainly in the biomedical field. They benefit from the fact that thermoformed microdevices have unique properties resulting from their special, unusual morphology. The focus of this paper is on the impact of the new class of micromoulding processes and the processed film materials on the characteristics of the moulded microdevices and on their applications. 相似文献
960.
Surface properties and cell adhesion onto allylamine-plasma and amine-plasma coated glass coverslips
Crespin M Moreau N Masereel B Feron O Gallez B Vander Borght T Michiels C Lucas S 《Journal of materials science. Materials in medicine》2011,22(3):671-682
Surface properties of nanoparticles to be used for radioimmunotherapy need to be optimized to allow antibody conjugation while
ensuring biocompatibility. We aimed to investigate cell adhesion and proliferation onto different coatings to be used for
nanoparticles. C, CH
x
or SiO
x
coatings deposited onto glass coverslips by magnetron deposition as well as nitrogen functionalized materials synthetized
using different reactive sputtering conditions and PPAA (plasma polymerized allylamine) coating, were compared. Amine functionalization
did increase hydrophilicity in all the materials tested. Biocompatibility was assessed by measuring cell viability, morphology,
attachment, spreading, and pro-inflammatory cytokine secretion. The results show that C and CN
x
were the most biocompatible substrates while SiO
x
and SiO
x
N
y
were the most toxic materials. PPAA coatings displayed unexpectedly an intermediate biocompatibility. A correlation could
be observed between wettability and cell proliferation except for C coated surface, indicating that more complex processes
than hydrophilicity alone are taking place that affect cell functions. 相似文献