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91.
为了提高硅基成像器件的紫外响应,本文通过对Alq3发光机理与光致发光特性的研究,用真空蒸镀的方法制备出了基于Alq3的有机金属薄膜.通过测量Alq3薄膜的透过率、光致发光光谱和激发光谱,发现Alq3薄膜在可见波段有很好的透过性,用紫外光激发会产生较强的绿光(中心波长位于510 nm),且激发光谱宽(250~425 nm).结论表明Alq3薄膜的发射光谱能够与传统硅基成像器件的响应光谱匹配,是一种符合实际要求的紫外增强薄膜.  相似文献   
92.
分类是遥感图像分析处理的一个重要环节,它是各种高级应用的基本前提.成像光谱遥感作为遥感领域一个新的发展方向,在提供更为丰富的光谱信息的同时,也使得传统的分类技术面临诸多新的挑战.本文从特征提取和分类器的设计两个方面对成像光谱图像分类的主要研究进展进行了论述.  相似文献   
93.
In this work, real-time ultraviolet photodetectors are realized through metal–semiconductor–metal (MSM) structures. Amorphous indium gallium zinc oxide (a-IGZO) is used as semiconductor material and gold as metal electrodes. The readout of an individual sensor is implemented by a transimpedance amplifier (TIA) consisting of an all-enhancement a-IGZO thin-film transistor (TFT) operational amplifier and a switched capacitor (SC) as feedback resistance. The photosensor and the transimpedance amplifier are both manufactured on glass substrates. The measured photosensor possesses a high responsivity R , a low response time t R E S , and a good noise equivalent power value NEP .  相似文献   
94.
对玻璃纤维增强环氧乙烯基酯树脂基复合材料在温湿环境下进行了人工紫外加速老化实验,并进行了拉伸、弯曲等试验,分析了试件紫外老化后的质量损失率、巴氏硬度、弯曲破坏形态以及力学性能的演变规律,并利用SEM观察了试样表面老化前后的形貌变化.研究表明:紫外线照射后试样的表面泛黄,且随照射时间的延长颜色不断加深;试样拉伸和弯曲性能以及巴氏硬度在紫外老化前期有所上升,160 h后开始下降;质量损失率随着紫外光照射时间的延长而逐渐增大;紫外老化后试件的弯曲破坏过程与未老化试件一致;随着老化周期的增加,孔隙量和韧性发白光带数量增加,呈现出明显的片层状海浪花样.  相似文献   
95.
Distinguishable detection of the ultraviolet, visible, and infrared spectrum is promising and significant for the super visual system of artificial intelligences. However, it is challenging to provide a photosensor with such broad spectral response ability. In this work, the ultraviolet, visible, and infrared spectrum is distinguished by developing serial photosensors based on perovskite/carbon nanotube hybrids. Oraganolead halide perovskites (CH3NH3PbX3) possess remarkable optoelectronic properties and tunable optical band gaps by changing the halogens, and integration with single‐walled carbon nanotubes can further improve their photoresponsivities. The CH3NH3PbCl3‐based photosensor shows a responsivity up to 105 A W?1 to ultraviolet and no obvious response to visible light, which is superior to that of most ultraviolet sensors. The CH3NH3PbBr3‐based photosensor exhibits a high responsivity to visible light. Serial devices of the two hybrid photosensors with comparable electric and sensory performances can distinguish the spectrum of ultraviolet, visible, and infrared even with varying light intensities. The photosensors also demonstrate excellent mechanical flexibility and bending stability. By taking full advantages of the oraganolead halide perovskites, this work provides flexible high‐responsivity photosensors specialized for ultraviolet, and gives a simple strategy for distinguishable detection of ultraviolet, visible, and infrared spectrum based on the serial flexible photosensors.  相似文献   
96.
以紫外线处理的三个光照工艺参数(时间、温度、距离)为因子,以纺纱质量和抗绕性能为指标,采用二次通用旋转组合设计试验和随机方向搜索法,求得最优工艺参数和各指标的等高线,讨论了各因子与指标的关系,提出了光照处理的基本原则。  相似文献   
97.
This paper presents a model to calculate depth-resolved marine photochemical fluxes from remotely sensed ocean color and modeled solar irradiance. The basic approach uses three components: 1) below-sea-surface spectral downward scalar irradiance calculated from a radiative transfer model (STAR) and corrected for clouds using TOMS UV reflectivities; 2) surface-ocean spectral diffuse attenuation coefficients and absorption coefficients for chromophoric dissolved organic matter retrieved from SeaWiFS ocean color using the SeaUV/SeaUVc algorithms; and (3) spectral apparent quantum yield for the photochemical reaction considered. The output of the model is a photochemical rate profile, ΨPR(z), where z represents depth.We implemented the model for carbon monoxide (CO) photochemistry using an average apparent quantum yield spectrum and generated a monthly climatology of depth-resolved CO photoproduction rates in the global ocean. The climatology was used to compute global budgets and investigate the spatial and seasonal variabilities of CO photoproduction in the ocean. The model predicts a global CO photoproduction rate of about 41 TgC yr− 1, in good agreement with other recent published estimates ranging from 30 to 84 TgC yr− 1. The fate of photochemically derived CO and its role in global biogeochemical cycles remains uncertain however, with biological consumption and sea-air exchange competing for its removal in the surface ocean. Knowledge of the vertical distribution of CO photoproduction is critical in the quantification of the relative magnitudes of these sink mechanisms. The depth-resolution capabilities of this model, together with US Naval Research Laboratory climatology for mixed layer depths allowed further estimation that > 95% of the total water-column CO photoproduction occurs within the mixed layer on a global, yearly basis. Despite this compelling figure, the model also suggests significant spatio-temporal variability in the vertical distribution of CO photoproduction in the subtropical gyres, where up to 40% of water-column CO can be produced below the mixed layer during summertime.While the approach can be applied to other photochemical fluxes (e.g. DIC formation or DMS removal), accurate quantification of such processes with remote sensing will be limited until the mechanisms regulating observed oceanic variability in the apparent quantum yields are better understood. Minor modification to this model can also make it applicable for the determination of the effects of UV and visible solar radiation on sensitive biological systems.  相似文献   
98.
Unique and novel thin films with aluminium (Al)-doped zinc oxide (ZnO) nanostructures consisting of nanorod-nanoflake networks were prepared for metal-semiconductor-metal (MSM)-type ultraviolet (UV) photoconductive sensor applications. These nanostructures were grown on a glass substrate coated with a seed layer using a combination of ultrasonic-assisted sol-gel and immersion methods. The synthesised ZnO nanorods had diameters varying from 10 to 40 nm. Very thin nanoflake structures were grown vertically and horizontally on top of the nanorod array. The thin film had good ZnO crystallinity with a root mean square roughness of approximately 13.59 nm. The photocurrent properties for the Al-doped ZnO nanorod-nanoflake thin films were more than 1.5 times greater than those of the seed layer when the sensor was illuminated with 365 nm UV light at a density of 5 mA/cm2. The responsivity of the device was found to be dependent on the bias voltage. We found that similar photocurrent curves were produced over eight cycles, which indicated that the UV sensing capability of the fabricated sensor was highly reproducible. Our results provide a new approach for utilising the novel structure of Al-doped ZnO thin films with a nanorod-nanoflake network for UV sensor applications. To the best of our knowledge, UV photoconductive sensors using Al-doped ZnO thin films with a nanorod-nanoflake network have not yet been reported.  相似文献   
99.
目的 古画隐藏信息是包含在画作中的一种微弱信息,对于文物鉴定与修复具有非常重要的意义,如何快速无损准确提取古画中微弱的隐藏信息是目前研究和应用的一大技术难题,本文利用高光谱成像技术快速无损提取古画隐藏信息。方法 对古画进行高光谱扫描成像,得到短波红外波段(1 000~2 500 nm)的高光谱立方体数据,联合多种光谱匹配技术分析古画中人物头冠颜料种类;利用主成分分析技术,提取古画头冠周围涂抹痕迹。结果 通过多种光谱匹配算法对颜料进行分析,确定了颜料种类,并对匹配算法进行了对比,结果表明在颜料混合的情况下,光谱匹配算法仍能够有效的识别出混合颜料的端元种类,光谱信息散度与光谱角的匹配算法SID_SA匹配精度可以达到0.096,相比其他匹配算法,效果最好;利用主成分分析技术分层剥离主要背景信息后,头冠周围位于画作底层的涂抹信息得到了加强,可以有效地区分背景颜料信息与涂抹信息,提取隐藏信息。结论 高光谱分析技术对古画隐藏信息的提取有很好地识别效果,能够准确提取绘画颜料种类,发现绘画过程中的涂抹等痕迹,特别适用于混合颜料的种类识别与画作底层信息提取,发掘画作隐藏信息,为文物保护修复与鉴定提供支持。  相似文献   
100.
化妆品防晒剂的研究进展及其安全性问题(续前)   总被引:3,自引:0,他引:3  
一类重要的且光稳定的UVA紫外线吸收剂是苯三唑邻位羟基取代的化合物。这类紫外线吸收剂主要吸收长波段的紫外线UVA,但其吸收效率或称摩尔消光系数要比二苯甲酰甲烷类化合物如Avobenzone低。由于这类苯三唑化合物中形成的氮-氢(N-H)  相似文献   
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