Wang Guang, Fan Hongzhao, Chen Zhongwei, Gao Yufei, Wang Zuankai, Li Zhigang, Lu Haipeng, Zhou Yanguang
Department of Mechanical and Aerospace Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, China.
Department of Chemistry, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, China.
Adv Sci (Weinh). 2024 Jul;11(25):e2401194. doi: 10.1002/advs.202401194. Epub 2024 Apr 22.
Tuning the thermal transport properties of hybrid halide perovskites is critical for their applications in optoelectronics, thermoelectrics, and photovoltaics. Here, an effective strategy is demonstrated to modulate the thermal transport property of hybrid perovskites by halide alloying. A highly tunable thermal conductivity of mixed-halide hybrid perovskites is achieved due to halide-alloying and structural distortion. The experimental measurements show that the room temperature thermal conductivity of MAPb(BrI ) (x = 0─1) can be largely modulated from 0.27 ± 0.07 W m K (x = 0.5) to 0.47 ± 0.09 W m K (x = 1). Molecular dynamics simulations further demonstrate that the thermal conductivity reduction of hybrid halide perovskites results from the suppression of the mean free paths of the low-frequency acoustic and optical phonons. It is found that halide alloying and the induced structural distortion can largely increase the scatterings of optical and acoustic phonons, respectively. The confined diffusion of MA cations in the octahedra cage is found to act as an additional thermal transport channel in hybrid perovskites and can contribute around 10-20% of the total thermal conductivity. The findings provide a strategy for tailoring the thermal transport in hybrid halide perovskites, which may largely benefit their related applications.
调节混合卤化物钙钛矿的热输运特性对于其在光电子学、热电学和光伏领域的应用至关重要。在此,展示了一种通过卤化物合金化来调节混合钙钛矿热输运特性的有效策略。由于卤化物合金化和结构畸变,实现了混合卤化物混合钙钛矿的高度可调热导率。实验测量表明,MAPb(BrI)(x = 0─1)在室温下的热导率可从0.27 ± 0.07 W m K(x = 0.5)大幅调节至0.47 ± 0.09 W m K(x = 1)。分子动力学模拟进一步表明,混合卤化物钙钛矿的热导率降低是由于低频声学和光学声子的平均自由程受到抑制。研究发现,卤化物合金化和诱导的结构畸变分别可大幅增加光学声子和声学声子的散射。发现MA阳离子在八面体笼中的受限扩散在混合钙钛矿中充当额外的热输运通道,可贡献约10 - 20%的总热导率。这些发现为调控混合卤化物钙钛矿中的热输运提供了一种策略,这可能极大地有益于其相关应用。