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Low-dimensional phonon specific heat of titanium dioxide nanotubes

机译:二氧化钛纳米管的低维声子比热

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The specific heat of multiwalled titanium dioxide (anatase phase) nanotubes has been measured between 1.5 and 95 K. Bulk anatase and rutile were also measured. The nanotube specific heal approaches that of bulk anatase at high temperatures. Below about 50 K the nanotube specific heat begins to show large enhancements compared to bulk. Using an isotropic elastic continuum model, this can be understood qualitatively as a transition to low-dimensional behavior. Below about 3 K there is a second transition and the nanotube specific heat becomes nearly constant, exceeding bulk anatase by an order of magnitude or more at 1.5 K.
机译:已测得多壁二氧化钛(锐钛矿相)纳米管的比热在1.5至95 K之间。还测量了大块锐钛矿和金红石。在高温下,纳米管的特异性修复接近锐钛矿的修复。低于约50 K,与本体相比,纳米管的比热开始显示出很大的提高。使用各向同性的弹性连续体模型,可以定性地将其理解为向低维行为的过渡。低于约3 K,则发生第二次跃迁,纳米管的比热变得几乎恒定,在1.5 K时超过本体锐钛矿一个数量级或更多。

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