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Characteristics and Temperature Measurement of a Non-Transferred Cascaded DC Plasma Torch 被引量:3
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作者 B.BORA N.AOMOA M.KAKATI 《Plasma Science and Technology》 SCIE EI CAS CSCD 2010年第2期181-187,共7页
Dependence of the current-voltage characteristics of a non-transferred DC cascaded plasma torch used for nanoparticle synthesis, on the plasma current and the plasma argon gas flow rate are reported in this paper. The... Dependence of the current-voltage characteristics of a non-transferred DC cascaded plasma torch used for nanoparticle synthesis, on the plasma current and the plasma argon gas flow rate are reported in this paper. The potential structure inside the torch and its dependence on the plasma current and gas flow rate are also investigated. The arc voltage is seen to exhibit negative characteristic for a current below 150 A and positive characteristic above that current value. The voltage drop near the electrodes is found to decrease with the increase in plasma current. 25~ of the total voltage is dropped near the cathode at a plasma current of 50 A and a argon plasma gas flow rate of 10 liter per minute (LPM), and it decreases to 12% with the current increasing to 300 A, and to 17% with a gas flow rate of 25 LPM. The variation in the torch efficiency with the gas flow rate and plasma current is also reported. The efficiency of the torch is found to be between 36% and 48%. In addition, the plasma gas temperature at various positions of the reactor and for different currents and voltages are measured by calorimetric estimation with a heat balance technique. 展开更多
关键词 DC plasma torch current voltage characteristics thermal efficiency temper- ature measurements
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Energy gap suppression and excess current in TI2Ba2CaCu208 intrinsic Josephson junctions 被引量:1
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作者 王培 解伟 +6 位作者 胡磊 刘欣 赵新杰 何明 季鲁 张旭 阎少林 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第5期502-504,共3页
Intrinsic Josephson junctions in misaligned T12Ba2CaCu208 thin film were fabricated on LaA103 substrate. The temperature dependence of the critical current is investigated around liquid nitrogen temperature. In the cu... Intrinsic Josephson junctions in misaligned T12Ba2CaCu208 thin film were fabricated on LaA103 substrate. The temperature dependence of the critical current is investigated around liquid nitrogen temperature. In the current voltage characteristic, large voltage jump and lack of resistive branch are observed, which shows good consistency with the intrinsic Josephson junctions. By analyzing the large gap voltage in the curve, great suppression of the energy gap is found. Through discussing the temperature dependence of the gap voltage in liquid nitrogen temperature, it is shown that this phenomenon can be caused by the non-equilibrium quasiparticle injection. The temperature influence on the excess current also confirms the non-equilibrium effect. 展开更多
关键词 intrinsic Josephson junctions current voltage characteristics energy gap excess current
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Characteristics of n-InAs/p-InAsSb heterojunctions with a cutoff wavelength of 4.8 μm
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作者 GAO Yuzhu XU Baiqiao +2 位作者 WANG Zhuowei GONG Xiuying FANG Weizheng 《Rare Metals》 SCIE EI CAS CSCD 2011年第3期267-269,共3页
n-InAs/p-InAsSb heterojunctions with a cutoff wavelength of 4.8 μm were successfully grown by one-step liquid phase epitaxy (LPE) tech-nology. Scanning electron microscopy (SEM) images and X-ray diffraction (XRD... n-InAs/p-InAsSb heterojunctions with a cutoff wavelength of 4.8 μm were successfully grown by one-step liquid phase epitaxy (LPE) tech-nology. Scanning electron microscopy (SEM) images and X-ray diffraction (XRD) patterns showed the mirror smooth surface, flat interface, and good crystalline quality of the heterojunctions. Fourier transform infrared (FTIR) transmittance spectra exhibited that the cutoff wave-lengths of InAsSb epilayers reach 4.8 μm. The standard current-voltage (I-V) characteristics with a high differential-resistance-area-product at zero bias (R0A) of 1.02×10-1 Ωcm2 at room temperature indicate that the fine p-n junctions have been obtained. 展开更多
关键词 HETEROJUNCTIONS liquid phase epitaxy current voltage characteristics WAVELENGTH
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Energy gap suppression and excess current in Tl_2Ba_2CaCu_2O_8 intrinsic Josephson junctions
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作者 王培 解伟 +6 位作者 胡磊 刘欣 赵新杰 何明 季鲁 张旭 阎少林 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第5期506-508,共1页
Intrinsic Josephson junctions in misaligned Tl2Ba2CaCu2O8 thin film were fabricated on LaAlO3 substrate. The temperature dependence of the critical current is investigated around liquid nitrogen temperature. In the cu... Intrinsic Josephson junctions in misaligned Tl2Ba2CaCu2O8 thin film were fabricated on LaAlO3 substrate. The temperature dependence of the critical current is investigated around liquid nitrogen temperature. In the current voltage characteristic, large voltage jump and lack of resistive branch are observed, which shows good consistency with the intrinsic Josephson junctions. By analyzing the large gap voltage in the curve, great suppression of the energy gap is found. Through discussing the temperature dependence of the gap voltage in liquid nitrogen temperature, it is shown that this phenomenon can be caused by the non-equilibrium quasiparticle injection. The temperature influence on the excess current also confirms the non-equilibrium effect. 展开更多
关键词 intrinsic Josephson junctions current voltage characteristics energy gap excess current
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Experimental Study of Electrodes Parameters Effects on Small Diffusion Combustion Flame
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作者 Tieqiu Huang Qi Chen +1 位作者 Limin Yan Yiting Zhang 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2015年第3期107-114,共8页
To study the configuration and conductivity effects on micro-scale methane-air flames by electric field and iron wind,different electric field forces and iron winds are generated by needle,circle and plate electrodes ... To study the configuration and conductivity effects on micro-scale methane-air flames by electric field and iron wind,different electric field forces and iron winds are generated by needle,circle and plate electrodes respectively in different electrodes heights under both AC and DC fields though experiments. Experimental results showed that the flame characteristics are affected by needle electrodes mainly through the action of ion wind,by plate type electrodes mainly through the action of electric field force and by annular electrodes through both the electric field force and ion wind at the same time. Under DC field 's effects of all electrodes types,the flame will consequently go down while the voltage reached to a limit value,and it will breakdown under the strong effect of the ion wind by needle electrodes. The results also showed the influence by different electrodes types to the current characteristics,resistance properties and configuration of themicro-scale flames. 展开更多
关键词 ELECTRODES diffusion flame voltage current characteristic flame resistance
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Study of electrophysical properties of metal–semiconductor contact by the theory of complex systems
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作者 Sh.G.Askerov L.K.Abdullayeva M.G.Hasanov 《Journal of Semiconductors》 EI CAS CSCD 2020年第10期17-20,共4页
The purpose of this work is to analyze the electrical properties of the metal–semiconductor contact(MSC)in the framework of the theory of complex systems.The effect of inhomogeneity of the different microstructures:p... The purpose of this work is to analyze the electrical properties of the metal–semiconductor contact(MSC)in the framework of the theory of complex systems.The effect of inhomogeneity of the different microstructures:polycrystalline,monocrystalline,amorphous metal–semiconductor contact surface is investigated,considering a Schottky diode(SD)as a parallel connection of numerous subdiodes.It has been shown that the polycrystallinity of the metal translates a homogeneous contact into a complex system,which consists of parallel connected numerous elementary contacts having different properties and parameters. 展开更多
关键词 Schottky diode metal–semiconductor contact currentvoltage characteristics interfaces HETEROGENEITY complex systems
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Electric Heating Property from Butyl RubberLoaded Boron Carbide Composites
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作者 孟德川 王宁会 LI Guofeng 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2014年第3期492-497,共6页
We researched the electric heating property from butyl rubber-loaded boron carbide composite. The effects of boron carbide content on bulk resistivity, voltage-current characteristic, thermal conductivity and thermal ... We researched the electric heating property from butyl rubber-loaded boron carbide composite. The effects of boron carbide content on bulk resistivity, voltage-current characteristic, thermal conductivity and thermal stability of boron carbide / butyl rubber (IIR) polymer composite were introduced. The analysis results indicated that the bulk resistivity decreased greatly with increasing boron carbide content, and when boron carbide content reached to 60%, the bulk resistivity achieved the minimum. Accordingly, electric heating behavior of the composite is strongly dependent on boron carbide content as well as applied voltage. The content of boron carbide was found to be effective in achieving high thermal conductivity in composite systems. The thermal conductivity of the composite material with added boron carbide was improved nearly 20 times than that of the pure IIR. The thermal stability test showed that, compared with pure IIR, the thermal stable time of composites was markedly extended, which indicated that the boron carbide can significantly improve the thermal stability of boron carbide / IIR composite. 展开更多
关键词 boron carbide butyl rubber RESISTIVITY characteristic of voltage and current thermal conductivity thermal stability
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Strain effect on graphene nanoribbon carrier statistic in the presence of non-parabolic band structure
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作者 N A Izuani Che Rosid M T Ahmadi Razali Ismail 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第9期480-483,共4页
The effect of tensile uniaxial strain on the non-parabolic electronic band structure of armchair graphene nanoribbon(AGNR) is investigated.In addition,the density of states and the carrier statistic based on the tig... The effect of tensile uniaxial strain on the non-parabolic electronic band structure of armchair graphene nanoribbon(AGNR) is investigated.In addition,the density of states and the carrier statistic based on the tight-binding Hamiltonian are modeled analytically.It is found that the property of AGNR in the non-parabolic band region is varied by the strain.The tunable energy band gap in AGNR upon strain at the minimum energy is described for each of n-AGNR families in the non-parabolic approximation.The behavior of AGNR in the presence of strain is attributed to the breakable AGNR electronic band structure,which varies the physical properties from its normality.The linear relation between the energy gap and the electrical properties is featured to further explain the characteristic of the deformed AGNR upon strain. 展开更多
关键词 strain graphene nanoribbon uniaxial strain currentvoltage characteristic
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