vo2
- 网络二氧化钒薄膜
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Phase transition temperature ( Tc ) of VO2 thin films was changed obviously by doping methods and then the electrical and optical properties were influenced .
掺杂能明显改变二氧化钒薄膜的相变温度,影响其电学和光学性质。
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VO2 thin films with semiconductor-to-metal phase transition property were prepared by IBED and Sol-gel methods on SiO2 / Si substrate .
采用离子束增强沉积(IBED)法和溶胶-凝胶法(Sol-gel)在siO2/Si衬底上制备了具有半导体相-金属相转换特性的二氧化钒薄膜。
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Preliminary studies on VO2 powder surface modification method .
3初步研究了有关VO2粉体表面改性的方法。
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But VO2 powder has greater application areas and prospects .
而VO2粉体材料,则具有更广阔的应用领域和前景。
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The function of laser on the phase transition of VO2 film is examined .
测试了激光对氧化钒薄膜相变的作用。
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It is well regarded as an accurate way to measure your VO2 max.
它被认为是测量最大摄氧量的一个准确途径。
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Pure VO2 is synthesized successfully and characterized by means of XRD .
成功地制备出了纯VO2粉体,并做了XRD表征。
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It is a basic scope to the applications of VO2 films onto smart windows .
为开展VO2薄膜材料在智能窗类光电产品的应用研究打下了良好的基础。
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XRD analysis and square resistance measurements proved that the thin films are VO2 ( B ) .
对薄膜的XRD分析和薄膜方阻特性的测试表明生成的薄膜是典型的VO2(B)薄膜。
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VO2 material is a widely used on the thermal material , while it has a variety of crystal structures .
二氧化钒(VO2)是一种被广泛研究的热敏材料,具有多种晶形。
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XRD patterns of VO2 show that none of the impurity peaks was observed .
产物组成均匀,其XRD谱未观察到非VO2的杂质峰。
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The MIT mechanism of VO2 , however , is a hot topic in condensed state physics .
然而对其相变机理的研究一直成为凝聚态物理的争论热点。
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Most world-class athletes have a high VO2 max or , as Dr.
绝大多数的世界级运动员拥有高最大氧耗量;
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A novel low temperature switch material VO2 thin film was fabricated by ion-sputtering and annealing .
采用离子束溅射和退火工艺制备了一种新的相变型薄膜VO2。
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The formation of VO2 ( B ) nanorods is " face landing " self-assembled process .
VO2(B)纳米棒的形成为面着陆自组织过程。
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Study on Two-Dimension dynamic Mathematical models and Relationship about Vo2 of Excellent Endurance athletes with the Variation HR Axis
优秀耐力运动员吸氧量随心率变化的二维动态数学模型及其数理关系的研究
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Nano-VO2 thin film that would be applied in the intelligent window is compared with conventional VO2 thin film .
给出了能应用于智能窗的纳米二氧化钒薄膜材料,并与常规的二氧化钒薄膜材料进行了分析比较。
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Several advances in VO2 thin film preparation are discussed , with focus on heat treatment conditions . Some latest applications are reviewed .
综述了VO2薄膜的制备工艺,着重探讨了热处理工艺和条件对其性能的影响,并介绍了它的最新应用情况。
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Based on the results of time dependent experiments , the growth process of VO2 ( B ) hollow like-nanosphere were proposed .
通过时间影响实验的结果,提出了VO2(B)中空类纳米球的晶体成长过程。
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Much work has been done to investigate the optical and electrical properties and numerous methods are used to prepare thin film of VO2 .
人们做了很多工作来研究其光电性质,并用了多种方法来制备VO2薄膜。
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Effect of azeotropic distillation on the phase transition behavior and powder morphology of doped VO2 powder had been investigated .
2研究了采用共沸蒸馏法制备掺杂对VO2粉体相变性能的影响。
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All of the improvements your body makes increase your VO2 Max , which is a measurement of your fitness level .
所有的身体状况上的改善将增加你的最大摄氧量,而最大摄氧量是测量你的健康水平的一个标准。
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Effects of the synthesis conditions , de-agglomeration process on the properties of VO2 ( W ) particles were investigated .
研究了合成条件、球磨过程对于VO2(W)粒子的性质的影响。
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Currently , you can 't just call the University of Maryland and ask for a VO2 max test .
目前,你不能只是给马里兰大学打电话,要求一个vo2测试。
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The phase transition temperature of VO2 powder is decreased remarkably by multi-doping of Molybdenum-Fluorine .
钼&氟复合掺杂对纳米粉体的相变温度有明显的降低。
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Specifically , VO2 Max measures the volume of oxygen a person can consume in one minute exercising at maximum exertion .
具体来说,最大摄氧量测量的是一个人在一分钟运动中的最大耗氧量。
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The primary contents , methods and results are as follows : 1 . Research on the VO2 phase transition properties doped by some different dopants .
本文主要研究内容、方法和结果如下:1实验研究了不同掺杂剂对VO2粉体相变性能的影响。
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However , vanadium can form dozens of vanadium oxides with oxygen . So preparation of VO2 thin films with one method is difficult .
研究发现钒可与氧构成几十种氧化物,目前采用的单一制备技术较难获得严格化学配比VO2薄膜。
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Sprinters were advised to improve LA tolerance ability whereas distance swimmers work on Vo2 max and LAT training .
短距离运动员应重点提高耐乳酸能力,中长距离运动员应重点进行最大摄氧量和个体乳酸阈训练。
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The experimental samples were processed for annealing and the temperature have a certain influence on the VO2 ( M / R ) particle size .
然后对以上的不同反应温度获得实验样品我们进行了退火处理,最终的得到的是VO2(M/R),并且退火的温度对VO2(M/R)微粒的尺寸有一定的影响。