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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Deformation of Carbon Nanotubes by Exposure to Water Vapor
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Deformation of Carbon Nanotubes by Exposure to Water Vapor

机译:暴露于水蒸气使碳纳米管变形

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摘要

The condensation of water inside multiwalled carbon nanotubes has been monitored and controlled using environmental scanning electron microscopy. Undersaturated vapor condenses inside nanotubes and forms nanometer-thick water films. Simultaneously, nanotubes deform and decrease their apparent diameter. When the vapor pressure in the chamber approaches the saturation pressure, we observe the formation of menisci and spontaneous buckling of the nanotubes. We derive a criterion of the buckling instability caused by capillary condensation. Remarkably, the buckling criterion appears to be independent of the meniscus shape. Using our experiments and models, we estimated the circumferential Young's modulus of large-diameter carbon nanotubes with disordered wall structure produced by the chemical vapor deposition method (CVD) to be E-theta theta approximate to 13-18 MPa. It appears to be at least 2 orders of magnitude lower than the longitudinal modulus of nanotubes produced by arc discharge or catalytic CVD methods. The reported experiments and proposed theory suggest possible applications of "soft" nanotubes as sensors to probe minute concentrations of absorbable gases and vapors.
机译:使用环境扫描电子显微镜已经监测和控制了多壁碳纳米管中水的冷凝。不足饱和的蒸气在纳米管内凝结并形成纳米级的水膜。同时,纳米管变形并减小其表观直径。当腔室中的蒸气压接近饱和压力时,我们观察到纳米管的弯液面和自发屈曲。我们推导了由毛细管凝结引起的屈曲不稳定性的判据。值得注意的是,屈曲准则似乎与弯液面形状无关。使用我们的实验和模型,我们估计通过化学气相沉积法(CVD)生产的具有无序壁结构的大直径碳纳米管的周向杨氏模量约为13-18 MPa的E-θ。它似乎比通过电弧放电或催化CVD方法生产的纳米管的纵向模量低至少两个数量级。报道的实验和提出的理论建议“软”纳米管作为传感器探测可吸收气体和蒸气的微量浓度的可能应用。

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