4
Sintering and dielectric properties of CaO-B2O3-SiO2 low temperature co-fired ceramics.pdf
Sintering and dielectric properties of CaO-B2O3-SiO2 low temperature co-fired ceramicsSintering and dielectric properties of CaO-B2O3-SiO2 low temperature co-fired ceramicsSintering and dielectric properties of CaO-B2O3-SiO2 low temperature co-fired ceramics
4
Electrochemical performance and kinetics of LiFePO4 C cathode in a low-temperature electrolyte.pdf
Electrochemical performance and kinetics of LiFePO4 C cathode in a low-temperature electrolyteElectrochemical performance and kinetics of LiFePO4 C cathode in a low-temperature electrolyteElectrochemical performance and kinetics of LiFePO4 C cathode in a low-temperature electrolyte
6
Low-Temperature Growth of Graphene by Chemical Vapor Deposition Using Solid and Liquid.pdf
LIET AL. VOL. XXX’NO. XX’000–000’XXXX CXXXX American Chemical SocietyLow-Temperature
4
The low temperature synthesis of Al doped ZnO films on glass and polymer using pulsed co-magnetron sputtering- H2 effect.pdf
It has been reported that a small amount of hydrogen in argon plasma induces an increase in the crystallite size of the as-deposited films. In
addition, control of the hydrogen partial pressure is expected to improve the carrier mobility by increasing the crystallinity of the film (larger
crystal size and lower grain boundary effects). Al doped ZnO (AZO) films were deposited by co-CFUBM (closed field unbalanced magnetron)
sputtering. The ultimate aim was to deposit transparent films on a polymer substrate with a low electrical resistivity. Therefore, the structural,
optical and electrical properties of AZO films were investigated as a function of the hydrogen partial pressure. A minimum resistivity and
maximum transparency of 8104 V cm and 88.1% were obtained, respectively. A critical PH2 was expected to improve the carrier mobility by
increasing the crystallinity of the film. However, above this value, conductivity reduced due to the formations of oxides such as ZnO a
13
Soybean grown under elevated CO2 benefits more under low temperature than high temperature stress Varying response of photosynthetic limitations leaf.pdf
Soybean grown under elevated CO2 benefits more under low temperature than high temperature stress Varying response of photosynthetic limitations leafSoybean grown under elevated CO2 benefits more under low temperature than high temperature stress Varying response of photosynthetic limitations leafSoybean grown under elevated CO2 benefits more under low temperature than high temperature stress Varying response of photosynthetic limitations leaf
8
structure and properties of cigs films based on one-stage rf-sputtering process at low substrate temperature.pdf
structure and properties of cigs films based on one-stage rf-sputtering process at low substrate temperature
129
Experimental Study and Modeling of a Low Temperature Rankine Cycle for Small Scale Cogeneration.pdf
Experimental Study and Modeling of a Low Temperature Rankine Cycle for Small Scale CogenerationExperimental Study and Modeling of a Low Temperature Rankine Cycle for Small Scale CogenerationExperimental Study and Modeling of a Low Temperature Rankine Cycle for Small Scale Cogeneration

向豆丁求助:有没有low-temperature?