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61.
高度取向ZnO薄膜的介电和光波导特性研究 总被引:4,自引:0,他引:4
用溶胶凝胶法在不同的基片上制备了具有高度 c 轴即(002)取向的 Zn O 薄膜,研究了溶剂、稳定剂等对合成的先体溶液的影响。对薄膜的 X R D 分析表明随热处理温度的增加,c 轴取向度增大,并且薄膜的晶粒尺寸在 300 ° C~500 ° C 范围内增幅较大。用端面耦合的方法测量了制备在 Si O2/ Si(111)基片上薄膜的波导损耗,即随热处理温度的增加,波导损耗增大,主要来源于 Zn O 薄膜与 Si O2 的界面及晶粒的散射。制备在 Pt/ Si O2/ Si(111)基片上薄膜的相对介电常数为 7~13,电阻率则为 1.7×104 Ω·cm ~9.8×105 Ω·cm 。 相似文献
62.
Sanjun Yang Kailang Liu Wei Han Liang Li Fakun Wang Xing Zhou Huiqiao Li Tianyou Zhai 《Advanced functional materials》2020,30(7)
P‐n junctions based on two dimensional (2D) van der Waals (vdW) heterostructure are one of the most promising alternatives in next‐generation electronics and optoelectronics. By choosing different 2D transition metal dichalcogenides (TMDCs), the p‐n junctions have tailored energy band alignments and exhibit superior performance as photodetectors. The p‐n diodes working at reverse bias commonly have high detectivity due to suppressed dark current but suffer from low responsivity resulting from small quantum efficiency. Greater build‐in electric field in the depletion layer can improve the quantum efficiency by reducing recombination of charge carriers. Herein, Cu9S5, a novel p‐type semiconductor with direct bandgap and high optical absorption coefficient, is synthesized by salt‐assisted chemical vapor deposition (CVD) method. The high density of holes in Cu9S5 endows the constructed p‐n junction, Cu9S5/MoS2, with strong build‐in electric field according to Anderson heterojunction model. Consequently, the Cu9S5/MoS2 p‐n heterojunction has low dark current at reverse bias and high photoresponse under illumination due to the efficient charge separation. The Cu9S5/MoS2 photodetector exhibits good photodetectivity of 1.6 × 1012 Jones and photoresponsivity of 76 A W?1 under illumination. This study demonstrates Cu9S5 as a promising p‐type semiconductor for high‐performance p‐n heterojunction diodes. 相似文献
63.
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65.
Mengfei Zhai Wei Yuan Zhanghua Han 《Journal of Infrared, Millimeter and Terahertz Waves》2017,38(12):1502-1509
We experimentally demonstrate that at terahertz frequencies perfect plasmonic absorbers made from a 3D V-groove array in a highly doped silicon wafer can be easily realized using simple wet-etching process. The surface plasmon modes can be excited by the V-groove array and get decayed when they propagate along the silicon surface and enter the grooves, inducing a broadband near-zero dip in the reflection spectra. The reflection spectrum of the fabricated absorber is characterized using a terahertz time-domain spectroscopy system, and the experimental results are in good agreement with numerical simulations. The high performance including high absorptivity and large bandwidth together with the easy fabrication processes presented in this paper make this plasmonic absorber promising for a wide range of practical applications in terahertz regime. 相似文献
66.
Wen Tian Xiao‐Peng Ji Weiwei Liu Jiangtao Zhai Guangjie Liu Yuewei Dai Shuhua Huang 《ETRI Journal》2019,41(5):585-598
A cyber‐physical system (CPS) is a new mechanism controlled or monitored by computer algorithms that intertwine physical and software components. Advanced persistent threats (APTs) represent stealthy, powerful, and well‐funded attacks against CPSs; they integrate physical processes and have recently become an active research area. Existing offensive and defensive processes for APTs in CPSs are usually modeled by incomplete information game theory. However, honeypots, which are effective security vulnerability defense mechanisms, have not been widely adopted or modeled for defense against APT attacks in CPSs. In this study, a honeypot game‐theoretical model considering both low‐ and high‐interaction modes is used to investigate the offensive and defensive interactions, so that defensive strategies against APTs can be optimized. In this model, human analysis and honeypot allocation costs are introduced as limited resources. We prove the existence of Bayesian Nash equilibrium strategies and obtain the optimal defensive strategy under limited resources. Finally, numerical simulations demonstrate that the proposed method is effective in obtaining the optimal defensive effect. 相似文献
67.
68.
Bo Duan Pengcheng Zhai Lisheng Liu Qingjie Zhang 《Journal of Electronic Materials》2011,40(5):932-936
Studies have shown that the thermoelectric properties of CoSb3 could be improved by the substitution of group IVB or VIB elements for Sb. However, the substitution volume is limited. To
get a better picture of the substitution volume in view of thermoelectric properties, Ge and Te double-substituted skutterudite
materials were prepared with the nominal composition of Co4Sb
x
Ge5.9−0.5x
Te6.1−0.5x
(x = 11, 10, 9, 8) by the traditional solid-state reaction method and spark plasma sintering, and Rietveld analysis was employed
to refine the crystal structure. The results showed that the lattice parameter decreased linearly and the solubility limitations
of group IVB and VIB elements were greatly alleviated by the Ge and Te codoping. Besides, the thermoelectric properties were
analyzed through measurements of electrical and thermal conductivities as well as room-temperature electrical transport properties.
The results showed that the substitution volume of Ge and Te could play an important role in the thermoelectric properties,
and a minimum lattice thermal conductivity value of 1.56 W m−1 K−1 was obtained at around 673 K for Co4Sb8Ge1.9Te2.1. Co4Sb11Ge0.4Te0.6 achieved the best figure of merit of 0.89 at around 773 K, which was remarkably improved over that of untreated CoSb3. 相似文献
69.
Eradication of Multidrug‐Resistant Staphylococcal Infections by Light‐Activatable Micellar Nanocarriers in a Murine Model 下载免费PDF全文
Yong Liu Henny C. van der Mei Bingran Zhao Yan Zhai Tangjian Cheng Yuanfeng Li Zhenkun Zhang Henk J. Busscher Yijin Ren Linqi Shi 《Advanced functional materials》2017,27(44)
Bacterial infections are mostly due to bacteria in their biofilm mode‐of‐growth, making them recalcitrant to antibiotic penetration. In addition, the number of bacterial strains intrinsically resistant to available antibiotics is alarmingly growing. This study reports that micellar nanocarriers with a poly(ethylene glycol) shell fully penetrate staphylococcal biofilms due to their biological invisibility. However, when the shell is complemented with poly(β‐amino ester), these mixed‐shell micelles become positively charged in the low pH environment of a biofilm, allowing not only their penetration but also their accumulation in biofilms without being washed out, as do single‐shell micelles lacking the pH‐adaptive feature. Accordingly, bacterial killing of multidrug resistant staphylococcal biofilms exposed to protoporphyrin IX‐loaded mixed‐shell micelles and after light‐activation is superior compared with single‐shell micelles. Subcutaneous infections in mice, induced with vancomycin‐resistant, bioluminescent staphylococci can be eradicated by daily injection of photoactivatable protoporphyrin IX‐loaded, mixed‐shell micelles in the bloodstream and light‐activation at the infected site. Micelles, which are not degraded by bacterial enzymes in the biofilm, are degraded in the liver and spleen and cleared from the body through the kidneys. Thus, adaptive micellar nanocarriers loaded with light‐activatable antimicrobials constitute a much‐needed alternative to current antibiotic therapies. 相似文献
70.
运营商4G/5G网络共用2.6 GHz频段,随着5G基站入网,同频干扰问题随之出现.本文提出了一种可进行同频干扰智能预判的系统,该系统可在频点调整前进行同频干扰的风险预判,以便于及时规避风险,研究分析和测试验证表明,该系统的输出结果有助于同频干扰小区的识别,快速判定同频干扰风险小区,提升优化效率,确保用户感知. 相似文献