首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Probing lattice vibrations of stabilized CsPbI(3)polymorphsvialow-frequency Raman spectroscopy
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Probing lattice vibrations of stabilized CsPbI(3)polymorphsvialow-frequency Raman spectroscopy

机译:稳定CSPBI(3)多晶型 - 频率拉曼光谱法的探测晶格振动

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Understanding electron-phonon interactions in metal-halide perovskites (MHPs) is critical for improving their performance in optoelectronic devices. Probing lattice vibrations with conventional spectroscopic methods, however, is challenging due to the sensitivity of MHPs to laser light, humidity, and temperature changes. Here we report low-frequency Raman spectra of the delta and gamma phases, as well as mixed ion derivatives, of CsPbI3. These spectra were obtained by combining below-bandgap low-frequency Raman measurements using a 976 nm laser and nanoconfinement of crystals within inert scaffolds to stabilize the MHPs against temperature-induced polymorph transitions and humidity-induced degradation. Density functional theory calculations demonstrate that the main vibrational modes in the delta- and gamma-CsPbI(3)Raman spectra correspond to octahedral twisting and distortions. Effects of the A-site cation and halide on these vibrational modes were determined by analyzing low-frequency Raman spectra of CsPbI(x)Br(3-x)and MA(y)Cs(1-y)PbI(3). The Raman peak positions primarily depend on the lattice dimensions, regardless of the nature of the cations and anions, with lattice expansions causing a shift of the vibrational modes to lower frequencies.
机译:了解金属卤化物钙锌矿中的电子 - 声子相互作用(MHPS)对于改善光电器件中的性能至关重要。然而,具有传统光谱方法的探测晶格振动是由于MHP对激光,湿度和温度变化的敏感性而挑战。在这里,我们向CSPBI3报告Delta和γ相的低频拉曼光谱,以及CSPBI3的混合离子衍生物。通过使用976nm激光和惰性支架内的晶体在惰性支架中组合下面的带隙低频拉曼测量来获得这些光谱,以稳定MHP的温度诱导的多晶型转变和湿度诱导的降解。密度函数理论计算表明,δ和γ-cspbi(3)拉曼光谱中的主要振动模式对应于八面体扭曲和扭曲。通过分析CSPBI(X)Br(3-x)和MA(1- y)Cs(3)的低频拉曼光谱来确定A-位点阳离子和卤化物对这些振动模式的影响。拉曼峰位置主要取决于晶格尺寸,无论阳离子和阴离子的性质如何,晶格扩展导致振动模式的偏移到较低频率。

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