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Thermal expansion and Thermal stress: Problem Solving01:27

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San Francisco's Golden Gate Bridge is exposed to temperatures ranging from -15 °C to 40 °C. At its coldest, the main span of the bridge is 1275 m long. Assuming that the bridge is made entirely of steel, what is the change in its length between these temperatures?
To solve the problem, first, identify the known and unknown quantities. The initial length (L) of the bridge is 1275 m, the coefficient of linear expansion (α) for steel is 12 x 10-6/°C, and the change in...
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室温可固化铜纳米线基于透明加热器

Darbha V Ravi Kumar1, Aarju Mathew Koshy2, Neha Sharma2

  • 1Department of Sciences, Amrita School of Physical Sciences, Amrita Vishwa Vidyapeetham, Coimbatore, Tamil Nadu 641 112, India.

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概括

我们使用铜纳米线 (Cu NWs) 开发了一种无化透明导电膜 (TCF). 这种具有成本效益的TCF提供了出色的导电性和透明度,为先进的光电子铺平了道路.

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科学领域:

  • 材料科学 材料科学 材料科学
  • 纳米技术纳米技术
  • 光电学是指光电子产品.

背景情况:

  • 银纳米线 (Ag NWs) 广泛用于透明导电膜 (TCFs),但其高成本和有限的丰富性是缺点.
  • 铜纳米线 (Cu NW) 具有相似的导电性,并且更为丰富,但在商业用途的加工和稳定性方面仍然存在挑战.
  • 对于Cu NW TCFs的现有方法通常需要高温回火和复杂的合成后修改,从而阻碍了可扩展性.

研究的目的:

  • 使用铜纳米线 (Cu NWs) 开发一种具有成本效益的,无回火的透明导电薄膜 (TCF).
  • 为了最大限度地减少Cu NW TCFs的合成后修改和高温处理.
  • 证明Cu NW TCFs在光电子应用中作为Ag NW TCFs可行的替代品的潜力.

主要方法:

  • 使用有机酸预处理开发了一个室温可固化的Cu NW墨水.
  • 通过对预处理的Cu NW油墨进行螺旋涂层制造的TCF.
  • 用聚二甲基 (PDMS) 封装Cu NW TCF,以防止氧化.

主要成果:

  • 实现了TCF,其板电阻为9.4 Ω/平方. 在550 nm的光学透明度为67.4%.
  • 开发的TCF不需要高温回火或广泛的后处理.
  • 封装的Cu NW TCF表现出良好的可重复性作为一个透明的加热器.

结论:

  • 没有回火的Cu NW TCF为Ag NW TCF提供了一个有希望的,低成本的替代方案.
  • 开发的制造方法简化了加工,使潜在的商业部署成为可能.
  • Cu NW TCF显示出各种光电子设备的潜力,包括透明加热器,触摸屏和光伏.