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Walking and rolling of crystals induced thermally by phase transition

机译:相变热诱导的晶体的走动和滚动

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摘要

The mechanical motion of materials has been increasingly explored in terms of bending and expansion/contraction. However, the locomotion of materials has been limited. Here, we report walking and rolling locomotion of chiral azobenzene crystals, induced thermally by a reversible single-crystal-to-single-crystal phase transition. Long plate-like crystals with thickness gradient in the longitudinal direction walk slowly, like an inchworm, by repeated bending and straightening under heating and cooling cycles near the transition temperature. Furthermore, thinner, longer plate-like crystals with width gradient roll much faster by tilted bending and then flipping under only one process of heating or cooling. The length of the crystal is shortened above the transition temperature, which induces bending due to the temperature gradient to the thickness direction. The bending motion is necessarily converted to the walking and rolling locomotion due to the unsymmetrical shape of the crystal. This finding of the crystal locomotion can lead to a field of crystal robotics.
机译:在弯曲和膨胀/收缩方面,已经越来越多地探索材料的机械运动。但是,材料的运动受到限制。在这里,我们报告了手性偶氮苯晶体的行走和滚动运动,它们是由可逆的单晶至单晶相变热诱导的。在接近转变温度的加热和冷却循环中,通过反复弯曲和矫直,在纵向上具有厚度梯度的长板状晶体像尺inch一样缓慢行走。此外,通过倾斜弯曲然后在仅加热或冷却的一种过程中翻转即可使具有宽度梯度的更薄,更长的板状晶体更快地滚动。晶体的长度被缩短到转变温度以上,这由于在厚度方向上的温度梯度而引起弯曲。由于晶体的不对称形状,弯曲运动必然转换为步行和滚动运动。晶体运动的这一发现可能会导致晶体机器人领域的发展。

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