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近紫外区的英文

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"近紫外区"怎么读用"近紫外区"造句

英文翻译手机手机版

  • near ultraviolet band
  • near ultraviolet region

例句与用法

  • Near ultraviolet band
    近紫外区
  • The intercalation of peo leads to the structural rearrangement , resulting in the improvement of the li + ions content in the films . moreover , the intercalation of peo enhances the electrochromic efficiency , resulting in the improvement of electrochromic behavior of the films
    同时普遍提高了复合薄膜在近紫外和近红外区域的吸收率,增强了薄膜在近紫外区的阴极电致色,提高了薄膜的电致变色效率,改善了薄膜的电致变色性能。
  • The stretching vibration of v = o shifts to lower wavenumbers , which is contributed to the oet v : = o bonding interaction . the intercalation of peo effectively shields the electrostatic interaction between li + ions and v2o5 layers , resulting in the improvement of the cycling reversibility and stability of li + ions insertion / extraction in the interlayer of v2o5 xerogel and the improvement of electrochromic behavior of the films
    通过电学、电化学和光学性能测试结果表明: peo的嵌入,有效屏蔽了vzos层对li十离子的静电作用及peo与li十离子之间产生的络合作用,大大提高了li +离子在氧化物层间的嵌入容量、嵌入/脱出可逆性和稳定性,有效提高了薄膜的电致变色性能尤其是在近紫外区的阴极电致变色性能。
  • Porous silicon ( ps ) is a new type silicon - based material developed in recent years , which has different properties compared with the crystalline materials . porous silicon can luminescence efficiently across the whole range from the near infrared , through the visible region , to the near uv region . this characteristic makes it possible to fabricate light - emitting devices and solve the key problem of the optoelectronic integrated circuit ( qeic ) , opening up the bright future for the vlic
    多孔硅( ps )是近年来发展起来的一种新型硅基材料,具有与单晶硅材料大不相同的特性,例如,多孔硅可在近红外和可见,甚至近紫外区辐射强烈的荧光,使得它可用来制造发光器件,并可望在解决光电子集成电子学的关键问题,为制造带有光源的大规模集成电路等方面开辟新的途径。
  • Under uv - irradiation of the xw11 / sio2 ( x = p , si , ge ) composite films , all as - synthesized films exhibited high photocatalytic activity on the degradation of aqueous formic acid ( fa ) . it has been shown that aqueous fa can be totally degraded into co2 and h2o . the photocatalytic reactions followed langmuir - hinshelwood first - order kinetics
    结果表明,在温和条件下(常温、常压和自然酸度) ,用近紫外区的光能辐射以上体系时,三种多金属氧酸盐复合膜材料都具有较高的活性,而且fa可被完全矿化为二氧化碳和水。
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