†Department of Electrical and Computer Engineering, Michigan State University, East Lansing, Michigan 48824,United States.
‡Department of Physics, University of Puerto Rico-Mayaguez, Mayaguez, Puerto Rico 00681, United States.
ACS Nano. 2015 Apr 28;9(4):4371-8. doi: 10.1021/acsnano.5b00873. Epub 2015 Apr 13.
Vanadium dioxide (VO2)-based actuators have demonstrated great performance in terms of strain energy density, speed, reversible actuation, programming capabilities, and large deflection. The relative low phase transition temperature of VO2 (∼68 °C) gives this technology an additional advantage over typical thermal actuators in terms of power consumption. However, this advantage can be further improved if light absorption is enhanced. Here we report a VO2-based actuator technology that incorporates single-wall carbon nanotubes (SWNTs) as an effective light absorber to reduce the amount of photothermal energy required for actuation. It is demonstrated that the chemistry involved in the process of integrating the SWNT film with the VO2-based actuators does not alter the quality of the VO2 film, and that the addition of such film enhances the actuator performance in terms of speed and responsivity. More importantly, the results show that the combination of VO2 and SWNT thin films is an effective approach to increase the photothermal efficiency of VO2-based actuators. The integration of SWNT films in VO2 devices can be easily applied to other VO2-based phototransducers as well as to similar devices based on other phase-change materials. While adding a sufficiently thick layer of some arbitrary material with high absorption for the light used for actuation (λ = 650 nm wavelength in this case) could have improved conversion of light to heat in the device, it could also have impeded actuation by increasing its stiffness. It is noted, however, that the low effective Young's modulus of SWNT film coating used in this work does not impair the actuation range.
基于二氧化钒(VO2)的致动器在应变能密度、速度、可逆致动、编程能力和大挠度方面表现出了卓越的性能。VO2 的相对较低的相变温度(约 68°C)使其在功耗方面相对于典型的热致动器具有额外的优势。然而,如果能增强光吸收,这一优势可以进一步提高。在这里,我们报告了一种基于 VO2 的致动器技术,该技术将单壁碳纳米管(SWNTs)作为一种有效的光吸收体,以减少致动所需的光热能量。实验表明,将 SWNT 薄膜与基于 VO2 的致动器集成过程中涉及的化学过程不会改变 VO2 薄膜的质量,并且添加这种薄膜可以提高致动器的速度和响应能力。更重要的是,结果表明,VO2 和 SWNT 薄膜的组合是提高基于 VO2 的致动器光热效率的有效方法。SWNT 薄膜在 VO2 器件中的集成可以很容易地应用于其他基于 VO2 的光传感器以及基于其他相变材料的类似器件。然而,添加一层足够厚的任意材料(在这种情况下,用于致动的光的波长为 λ=650nm),其对光的吸收性较高,这可能会提高器件中光到热的转换效率,但也可能会通过增加其硬度来阻碍致动。然而,需要注意的是,在这项工作中使用的 SWNT 薄膜涂层的低有效杨氏模量不会影响致动范围。