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Effects of impurities on the lattice dynamics of nanocrystalline silicon for thermoelectric application

机译:杂质对热电应用纳米晶硅晶格动力学的影响

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摘要

Doped silicon nanoparticles were exposed to air and sintered to form nanocrystalline silicon. The composition, microstructure, and structural defects were investigated with TEM, XRD, and PDF and the lattice dynamics was evaluated with measurements of the heat capacity, of the elastic constants with resonant ultrasound spectroscopy and of the density of phonon states (DPS) with inelastic neutron scattering. The results were combined and reveal that the samples contain a large amount of silicon dioxide and exhibit properties that deviate from bulk silicon. Both in the reduced DPS and in the heat capacity a Boson peak at low energies, characteristic of amorphous SiO_2, is observed. The thermal conductivity is strongly reduced due to nanostructuration and the incorporation of impurities.
机译:将掺杂的硅纳米颗粒暴露于空气中并烧结以形成纳米晶硅。用TEM,XRD和PDF研究了组成,微观结构和结构缺陷,并通过测量热容量,共振超声光谱的弹性常数以及非弹性声子态(DPS)的密度来评估晶格动力学。中子散射。合并结果并显示出样品中包含大量的二氧化硅,并且显示出与块状硅不同的性质。在降低的DPS和热容量中,均观察到低能量的玻色子峰,这是非晶态SiO_2的特征。由于纳米结构和杂质的引入,热导率大大降低。

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