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81.
82.
Porous silicon(PS) layers were formed on textured crystalline silicon by electrochemical etching in HF-based electrolyte.Optical and electrical properties of the TMAH textured surfaces with PS formation are studied. Moreover,the influences of the initial structures and the anodizing time on the optical and electrical properties of the surfaces after PS formation are investigated.The results show that the TMAH textured surfaces with PS formation present a dramatic decrease in reflectance.The longer the anodizing time is,the lower the reflectance.Moreover,an initial surface with bigger pyramids achieved lower reflectance in a short wavelength range.A minimum reflectance of 3.86%at 460 nm is achieved for a short anodizing time of 2 min.Furthermore,the reflectance spectrum of the sample,which was etched in 3 vol.%TMAH for 25 min and then anodized for 20 min,is extremely flat and lies between 3.67%and 6.15%in the wavelength range from 400 to 1040 nm.In addition,for a short anodizing time,a slight increase in the effective carrier lifetime is observed.Our results indicate that PS layers formed on a TMAH textured surface for a short anodization treatment can be used as both broadband antireflection coatings and passivation layers for the application in solar cells. 相似文献
83.
Ge-nanoclusters were formed by electron-beam irradiation in Ge-doped silica-on-silicon thin films. The size and density of the clusters can be controlled by the irradiation intensity and time. 相似文献
84.
以基于Cadence CCOPT引擎设计时钟树为例,介绍了以降低时钟树功耗为主要目的,使用门控技术,以及选择合适缓冲器、反相器构建时钟树的方法。通过完成物理设计动态仿真和功耗分析的数据表明,在保证时序收敛的前提下,使用门控技术和选用不同缓冲器、反向器对整个时钟树的功耗及性能影响进行分析。实验结构表明,对使用门控技术芯片的功耗在不同的操作条件下,整个时钟树上的功耗节省约50%;适合使用缓冲器和方向器构建时钟树。同时,在使用达到相同驱动的能力缓冲器和反相器情况下,使用缓冲器的时钟树较使用反相器的时钟树节省30%。 相似文献
85.
Hydrogen‐Terminated Si Nanowires as Label‐Free Colorimetric Sensors in the Ultrasensitive and Highly Selective Detection of Fluoride Anions in Pure Water Phase 下载免费PDF全文
Hui Wang Pei‐Hong Fan Bin Tong Yu‐Ping Dong Xue‐Mei Ou Fan Li Xiao‐Hong Zhang 《Advanced functional materials》2015,25(10):1506-1510
The detection of anions in pure water phase with colorimetric sensor is a long standing challenge. As one of the most important anions, F– is associated with nerve gases and the refinement of uranium for nuclear weapons. However, limited by its anions nature, few of the reported colorimetric sensors can successfully applied to detect F–1 in pure water phase. This work designs a colorimetric sensor for F–1 pure water phase detection by taking the advantages of the strong specific binding between F and Si, as well as the color‐changing property of H‐terminated Si nanowires (SiNWs). The sensor demonstrates ultra‐sensitivity, high selectivity, and good stability. The results reveal particular interest for the development of new type aqueous phase anions sensors with SiNWs. 相似文献
86.
Efficiently Releasing the Trapped Energy Flow in White Organic Light‐Emitting Diodes with Multifunctional Nanofunnel Arrays 下载免费PDF全文
Lei Zhou Qing‐Dong Ou Yan‐Qing Li Heng‐Yang Xiang Lu‐Hai Xu Jing‐De Chen Chi Li Su Shen Shuit‐Tong Lee Jian‐Xin Tang 《Advanced functional materials》2015,25(18):2660-2668
White organic light‐emitting diodes (OLEDs) hold great promise for applications in displays and lighting due to high efficiency and superior white color balance. However, further improvement in efficiency remains a continuous and urgent demand due to limited energy flow extraction. A powerful method for drastically releasing the trapped energy flow in conventional white OLEDs is demonstrated by implementing unique quasi‐periodic subwavelength nanofunnel arrays (NFAs) via soft nanoimprinting lithography, which is ideal for enhancing light extraction without any spectral distortion or angular dependence. The resulting efficiency is over 2 times that of a conventional OLED used as a comparison. The external quantum efficiency and power efficiency are raised to 32.4% and 56.9 lm W?1, respectively. Besides, the substantial increase in efficiency over a broad bandwidth with angular color stability, the experimental proofs show that the NFA‐based extraction structure affords the enticing capacity against scrubbing and the self‐cleaning feature, which are critical to the commercial viability in practical applications. 相似文献
87.
Ge Zhang Xuewu Ou Chunyu Cui Jianmin Ma Jinghai Yang Yongbing Tang 《Advanced functional materials》2019,29(2)
Dual‐ion batteries (DIBs) have attracted much attention due to their advantages of low cost and especially environmental friendliness. However, the capacities of most DIBs are still unsatisfied (≈100 mAh g?1) ascribed to the limited capacity of anions intercalation for conventional graphite cathode. In this study, 3D porous microcrystalline carbon (3D‐PMC) was designed and synthesized via a self‐templated growth approach, and when used as cathode for a DIB, it allows both intercalation and adsorption of anions. The microcrystalline carbon is beneficial to obtain capacity originated from anions intercalation, and the 3D porous structure with a certain surface area contributes to anions adsorption capacity. With the synergistic effect, this 3D‐PMC is utilized as cathode and tin as anode for a sodium‐based DIB, which has a high capacity of 168.0 mAh g?1 at 0.3 A g?1, among the best values of reported DIBs so far. This cell also exhibits long‐term cycling stability with a capacity retention of ≈70% after 2000 cycles at a high current rate of 1 A g?1. It is believed that this work will provide a strategy to develop high‐performance cathode materials for DIBs. 相似文献
88.
一种GMSK调制解调器的实现 总被引:2,自引:0,他引:2
GMSK信号具有很好的频谱和功率特性,特别适用于功率受限和信道存在非线性、衰落以及多普勒频移的移动突发通信系统。论文提出了基于CMX909B调制芯片和8051控制芯片的GMSK无线调制解调器的软、硬件设计方案,接收/发送速率可达38.4kbps,并对GMSK调制进行了性能仿真。该设计成本低,操作灵活,具有应用意义。 相似文献
89.
90.
Sivacarendran Balendhran Sumeet Walia Hussein Nili Jian Zhen Ou Serge Zhuiykov Richard B. Kaner Sharath Sriram Madhu Bhaskaran Kourosh Kalantar‐zadeh 《Advanced functional materials》2013,23(32):3952-3970
In the quest to discover the properties of planar semiconductors, two‐dimensional molybdenum trioxide and dichalcogenides have recently attracted a large amount of interest. This family, which includes molybdenum trioxide (MoO3), disulphide (MoS2), diselenide (MoSe2) and ditelluride (MoTe2), possesses many unique properties that make its compounds appealing for a wide range of applications. These properties can be thickness dependent and may be manipulated via a large number of physical and chemical processes. In this Feature Article, a comprehensive review is delivered of the fundamental properties, synthesis techniques and applications of layered and planar MoO3, MoS2, MoSe2, and MoTe2 along with their future prospects. 相似文献