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6篇 您的检索式:作者名="Fritz Prinz"
    题名 作者 年代 出处 被引量
1A costbenefit Analysis model of product design for recyclability and its application 显示文摘Chen Rosy Wei Dundee Navin Chandra Prinz Fritz B 1994IEEE Transactions on Components Packaging and Manufacturing Technology--Part A1994,14,4:1
2Thermal behavior of a metal embedded fiber Bragg grating sensor显示文摘Xiao Chun Li Fritz Prinz John Seim 2001Smart Material and Structure2001,10,4:1
3The triple phase boundary:a mathematical model and experimental investigations for fuel cells显示文摘RYAN O'Hayre DAVID M Barnett FRITZ B Prinz 0,,:1
4Capacitive sensor for active tip clearance control in a palm-sized gas turbine generator显示文摘Tibor Fabian Fritz Prinz Georg Brasseur 2005IEEE Transactions on Instrumentation and Measurement2005,54,3:1
5The interface of SiO_2/ZnS films studied by high resolution X-ray photoluminescence显示文摘Sharp interfaces in optoelectronic devices are key for proper band alignment. Despite its benefits as buffer layer, ZnS deposited via atomic layer deposition(ALD) renders intermixed interfaces to its substrate, which can be detrimental for device performance. Here, we are attempting to elucidate the chemical species deriving from this metal-oxide to metal-sulfide transition studying ultrathin film ZnS on SiO_2 using high resolution X-ray photoluminescence spectroscopy(XPS).Regarding the S 2p spectra after a deposition of only three cycles of ZnS, we discover the many different chemical species in which S is present. These include intermediate oxides such as SO_4^(2-).These species become more obvious as we tilt the sample in the XPS chamber to shallower angles.Comparing the Si 2p and S 2p high resolution peaks in the depth profile, one can clearly uncover the confinement of SO_4^(2-) to the interface of the underlying substrate. This may indicate that SiO_2/ZnS interfaces contain interfacial sulphates that likely alter the electronic configuration of this interface.Shinjita Acharya Orlando Trejo Anup Dadlani Jan Torgersen Filippo Berto Fritz Prinz 2018Theoretical & Applied Mechanics Letters2018,8,1:0
6下一代能量转换装置用ALD阀门显示文摘气候变化、能源安全和化石燃料短缺促使人们去研究太阳能电池、氢燃料电池等清洁、高效的能量转换装置。燃料电池和太阳能电池需要运输载荷子穿过一个薄膜来将其发送给外部电路。因此,能够沉积优质、保形、均匀且尽可能薄(以降低薄膜内载荷子运输带来的电阻损耗)的薄膜沉积技术将使上述两种电池技术受益。Tim Holme Fritz Prinz John Baxter 2009集成电路应用2009,26,6:0
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