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首页> 外文期刊>Science Advances >Giant isotope effect on phonon dispersion and thermal conductivity in methylammonium lead iodide
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Giant isotope effect on phonon dispersion and thermal conductivity in methylammonium lead iodide

机译:甲基庚烷铅碘化物中的巨位分散和导热率的巨大同位素

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Lead halide perovskites are strong candidates for high-performance low-cost photovoltaics, light emission, and detection applications. A hot-phonon bottleneck effect significantly extends the cooling time of hot charge carriers, which thermalize through carrier–optic phonon scattering, followed by optic phonon decay to acoustic phonons and finally thermal conduction. To understand these processes, we adjust the lattice dynamics independently of electronics by changing isotopes. We show that doubling the mass of hydrogen in methylammonium lead iodide by replacing protons with deuterons causes a large 20 to 50% softening of the longitudinal acoustic phonons near zone boundaries, reduces thermal conductivity by ~50%, and slows carrier relaxation kinetics. Phonon softening is attributed to anticrossing with the slowed libration modes of the deuterated molecules and the reduced thermal conductivity to lowered phonon velocities. Our results reveal how tuning the organic molecule dynamics enables control of phonons important to thermal conductivity and the hot-phonon bottleneck.
机译:铅卤化铅钙矿是高性能低成本光伏,发光和检测应用的强候选者。热敏孔瓶颈效应显着延伸了热电荷载体的冷却时间,该冷却时间通过载波光学声子散射热化,然后是光学声子衰减到声学声子,最后热传导。要了解这些过程,我们通过改变同位素来调整晶格动力学独立于电子产品。我们表明,通过用氘代替换质子将甲基庚烷铅碘化物中的氢气量加长导致区域边界附近的纵向声子音源的大20%至50%,降低导热率〜50%,减缓载体松弛动力学。声子软化归因于逆转分子的减慢的自由模式以及降低声子速度的降低的热导率。我们的结果揭示了有机分子动力学的调整如何控制对导热系数和热敏瓶颈很重要的声子。

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