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Titania nanorods curve to lower their energy

机译:二氧化钛纳米棒曲线降低能量

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Spontaneous formation of curved nanorods is generally unexpected, since curvature introduces strain energy. However, electron microscopy shows that under hydrothermal conditions, some nanorods grown by oriented attachment of small anatase particles on {101} surfaces are curved and dislocation free. Molecular dynamics simulations show that the lattice energy of a curved anatase rod is actually lower than that of a linear rod due to more attractive long-range interatomic Coulombic interactions among atoms in the curved rod. The thermodynamic driving force stemming from lattice energy could be harnessed to produce asymmetric morphologies unexpected from classical Ostwald ripening with unusual shapes and properties.
机译:自发形成的弯曲纳米棒通常出乎意料,因为曲率介绍应变能。在水热条件下,一些纳米棒增加了面向小锐钛矿的附件粒子在{101}面是弯曲的位错是免费的。显示的晶格能弯曲的锐钛矿杆实际上是低于一个线性杆由于远程原子间更具吸引力在弯曲的库仑相互作用的原子杆。从晶格能量可以被用来生产不对称形态从古典意想不到的奥斯特瓦尔德成熟与不寻常的形状和属性。

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