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Why is the thermalization of excited electrons in semiconductor nanoparticles so rapid? Studies on CdSe nanoparticles

机译:为什么半导体纳米粒子中激发电子的热化如此之快? CdSe纳米粒子的研究

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摘要

Quantum confinement of electronic motion in semiconductor nanoparticles leads to quantization of its band continua of the bulk. The relaxation between the resulting quantized levels by electron phonon coupling was expected, but not found, to be slow due to the small phonon frequencies (phonon bottleneck). Studying the electronic relaxation from the band gap and a higher excited state in CdSe dots and rods under different perturbations suggest the importance of coupling the excited electron to the surface. The surface species act as an efficient heat bath or as electron trapping sites in the linear or nonlinear (Auger) relaxation processes. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 24]
机译:半导体纳米粒子中电子运动的量子限制导致其整体的带连续性的量化。由于声子频率小(声子瓶颈),通过电子声子耦合得到的量化能级之间的弛豫是预期的,但没有发现,这是缓慢的。从带隙和CdSe点和棒中的高激发态在不同扰动下研究电子弛豫表明,将激发电子耦合到表面非常重要。在线性或非线性(俄歇)弛豫过程中,表面物质可充当有效的热浴或电子俘获位点。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:24]

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