传感材料
- 网络sensing material
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光纤气敏传感材料SnO2的光学特性研究
Study of optical characteristics of SnO_2 as optical fiber gas sensing material
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这些特性使PCs成为理想的传感材料,应用于化学和生物传感器领域。
These characteristics made it to an ideal sensing material for using in the field of chemical and biological sensors .
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新型氧气传感材料&β-Bi2O3型固溶体
New material for oxygen sensor & β - bi_2o_3-related solid solutions
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正电子湮没技术在ZrO2氧敏传感材料研究中的应用
Application of Positron Annihilation Technique on ZrO_ 2 Oxygen Sensor
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光纤传感材料SnO2的气敏光反射特性研究
Study of gas sensing optical reflective characteristic for optical sensing material sno_2
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CuO纳米线在不同气氛中的表面光伏特性表明其是潜在的光电气体传感材料。
The surface photovoltaic properties of the CuO nanowires in different atmosphere demonstrate it a good potential photoelectric gas sensing material . 4 .
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另一方面,CNT因具有大的比表面积,近年来作为新兴的传感材料,在气敏和湿敏方面的报道不断出现。
On the other hand , CNT has been highly expected as a novel sensing material because of its large sensing area and high chemical inertness .
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利用压电陶瓷PZT的正反压电效应,将PZT薄膜同时作为驱动及传感材料,设计并制造了两种新颖的以IC兼容技术制作在硅片上的压电薄膜微型陀螺。
We design and fabricate two kinds of piezoelectric micro gyroscopes with PZT thin film as actuating and sensing material at the same time , for PZT film has piezoelectric and reverse piezoelectric effect .
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研究发现,增加传感材料PEI在QCM电极的加载量能够提供更多的吸附甲醛分子的吸附点,进而会提高传感器的性能。
The study found that increasing coating load of PEI on QCM could provide more adsorption points for formaldehyde , and thus will improve sensor performance .
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过渡金属氧化物NTC热敏材料具有良好的电阻-温度特性,是理想的温度传感材料。
Negative temperature coefficient ( NTC ) thermistors , often consisting of transition metal oxides and with the favorable resistivity-temperature property , are employed as temperature sensors and other thermistor devices .
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迄今为止,人们已经开发了多种气敏材料,其中,氧化钨(WO3)被认为是最有潜力的NO2气敏传感材料。
So far , a variety of gas sensitive materials have been developed , when tungsten trioxide ( WO3 ) is considered as one of the most promising materials in the field of gas sensors materials .
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随后以此异质结构的纳米线为传感材料制备了气体传感器,该异质结构的纳米线传感器在室温下对500ppm的氢气和1000ppm的氧气有良好的传感性能。
Then the gas sensor based on the nanowires sensing materials was fabricated . The nanowires based gas sensor show good sensitivity toward 500 ppm H2 and 1000 ppm O2 at room temperature , respectively .
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传感材料的研究是光纤电流传感器中的一个重要问题。
Investigations on the sensing materials are very important issues for OCTs .
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新型传感材料迟环现象的智能补偿方法
Intelligent Compensation of Delay Phenomenon of New Type Sensing Material
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化学传感材料SnO2的量子化学研究
The studies of chemical sensor material sno_2 on Quantum Chemistry
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发光分子/介孔分子筛组装传感材料的研究
Luminescent Molecule / Mesoporous Molecular Sieves as Assembly Sensing Materials
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重要传感材料荧光共轭聚合物PPESO3的一种新的简便合成路线
A Facile Synthetic Route for an Important Sensing Material Fluorescent Conjugated Polymer PPESO_3
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压电传感材料与结构的变形传递模型
Deformation Transfer in Smart Structures with Integrated Piezoceramic Sensors
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有机/聚合物图像传感材料的研究进展
Progress in organic / polymer materials for image sensors
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桥梁工程智能传感材料应用技术探讨
Application Technology of Smart Materials Used in Bridges
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附有刻度的玻璃温度计高温传感材料&掺铒硅酸盐玻璃温度特性的研究
Temperature Characteristics of Er3 ~ + - Doped Silicate Glass for High Temperature Sensing Material
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聚合物膜基信息传感材料
Info-sensitive materials based on polymer films
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左旋α石英&传感材料的群论分析Ⅰ:空间群不可约表示
The Group Theoretical Analysis of the laevo - α - quartz ⅰ: The irreducible Multiplier Representations
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该种染料复合微球有可能成为一种多功能的荧光温度传感材料。
This kind of dye-composite microspheres has the potential of becoming a multifunctional fluorescent thermosensitive material . 2 .
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法拉第传感材料的磁光性能对于光纤电流传感器的性能有重要的影响。
Magneto optic properties of Faraday sensing element has much affect on the performance of the Optic Fiber Current Sensor .
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压电材料是目前在智能材料系统研究中应用最为广泛的传感材料之一。
At present , piezoelectricity material is one of the most widely used sensing materials in the research of smart material systems .
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本文概述了纳米线电沉积制备的进展,并对各种纳米氢传感材料进行了综述。
This dissertation mainly gives an overview of the development of metal nanowires electrodeposition and the applications of various nano-based hydrogen sensing materials .
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镍和钴的硒化物纳米材料在催化剂、传感材料、磁性材料以及电池等方面有着极其广泛的应用。
Nickel and cobalt selenides are widely applied in the fields of catalyst , sensor materials , magnetic materials , cell and so on .
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它们在分子构型、分子手性、液晶材料和传感材料等方面的潜在应用被广泛研究。
On the other hand , nonplanar macrocycles of this type have been studied with regard to their conformation , chirality , and their potential application to liquid crystalline and sensing materials .
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随着先进磁传感材料、电子学和地磁学的发展,地球磁场在定向技术、航天环境监测和预报、海空智能武器的研发,尤其是导航、制导领域展现出了巨大的潜力。
With the development of sensor-material , electronics and geomagnetism , earth magnetic field have huge potential for directional technology , monitor of space environment and research of weapon system , especially navigation and guidance .