全部文献期刊会议图书|学者科研项目
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作者:James A. Stewart , Rémi Dingreville
来源:[J].Acta Materialia(IF 3.941), 2020, Vol.188, pp.181-191
摘要:Abstract(#br)Metallic, nanocomposite, thin-films with intertwined morphologies can be synthesized via physical vapor deposition of two immiscible metals. Understanding the phase-ordering kinetics controlling the way the microstructure develops is crucial to obtaining reliable and...
作者:Lihua Gao , Hongbo Guo , Liangliang Wei ...
来源:[J].Surface & Coatings Technology(IF 1.941), 2015, Vol.276, pp.424-430
摘要:Abstract(#br)Plasma spray physical vapor deposition (PS-PVD) was used to deposit yttria stabilized zirconia (YSZ) coatings with microstructures varying from dense lamellae to quasi-columns out of vapor, as well as hybrid microstructure resulting from liquid droplet and vapor co-deposition...
作者:Stephen P Stagon , Hanchen Huang
来源:[J].Nanoscale Research Letters(IF 2.524), 2014, Vol.9 (1), pp.1-5Springer
摘要:Abstract(#br)This letter proposes and experimentally demonstrates that oxygen, through action as a surfactant, enables the growth of aluminum nanorods using physical vapor deposition. Based on the mechanism through which oxygen acts, the authors show that the diameter of aluminum...
作者:Ruei-San Chen , Wen-Chun Wang , Ching-Hsiang Chan ...
来源:[J].Nanoscale Research Letters(IF 2.524), 2013, Vol.8 (1), pp.1-8Springer
摘要:Abstract(#br)Photoconductivities of monocrystalline vanadium pentoxide (V 2 O 5 ) nanowires (NWs) with layered orthorhombic structure grown by physical vapor deposition (PVD) have been investigated from the points of view of device and material. Optimal responsivity and gain for ...
作者:X.H Wang , A Yamamoto , K Eguchi ...
来源:[J].Science and Technology of Advanced Materials(IF 3.752), 2003, Vol.4 (2), pp.167-172Elsevier
摘要:Abstract(#br)SiC thick films of about 300 μm could be prepared with a deposition rate above 300 nm/s by thermal plasma physical vapor deposition (TPPVD) using ultrafine SiC powder as a starting material. The thermoelectric properties were investigated as a function of compo...
作者:X.H. Wang , K. Eguchi , C. Iwamoto ...
来源:[J].Science and Technology of Advanced Materials(IF 3.752), 2003, Vol.4 (2), pp.159-165Elsevier
摘要:Abstract(#br)Thick silicon carbide films have been successfully deposited at a deposition rate of 125 nm/s on stationary graphite substrates by the thermal plasma physical vapor deposition technique, with ultrafine SiC powder fed into a hybrid plasma jet and completely evaporat...
作者:Jing-Yong Sun , Yan-Ling Pei , Shu-Suo Li ...
来源:[J].Rare Metals(IF 0.493), 2017, Vol.36 (7), pp.556-561Springer
摘要:... In this work, a Ni-rich Ni3Al coating with γ′/γ two-phase microstructure was deposited by electron beam physical vapor deposition (EB-PVD), which worked as repairing the worn blade tips of single crystal blades. Nb molten pool was used to increase the molten ...
作者:E. A. Vysotina , V. A. Kazakov , M. N. Polyansky ...
来源:[J].Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques(IF 0.359), 2017, Vol.11 (6), pp.1177-1184Springer
摘要:...6 μm are obtained by physical vapor deposition with plasma separation and a pulsed carbon arc source with a cooled cathode and laser arc ignition; the substrates are titanium alloy (VT4), stainless steel (12Cr18N10T), and copper (M1). Scanning electron microscopy and pro...
作者:J.N. Fru , N. Nombona , M. Diale
来源:[J].Physica B: Physics of Condensed Matter(IF 1.327), 2020, Vol.578Elsevier
摘要:Abstract(#br)Methylammonium lead tri-bromide (MAPbBr 3 ) thin films were grown by sequential physical vapor deposition of lead(II)bromide and methylammonium bromide (MABr). X-ray diffractograms confirmed the cubic MAPbBr 3 structure with P m 3 ‾ m spac...
作者:Chunchuan Xu , Jun Yang , Ershuai Liu ...
来源:[J].Journal of Power Sources(IF 4.675), 2020, Vol.451Elsevier
摘要:Abstract(#br)Two physical vapor deposition (PVD) processes, magnetron sputtering (MS) and arc plasma deposition (APD), were investigated to prepare oxygen reduction reaction (ORR) catalysts for proton exchange membrane fuel cells (PEMFCs). The catalysts are composed of Pt or ...

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