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Mike Pols,Geert Brocks,Sofía Calero et al. Mike Pols et al.
Phonons in chiral crystal structures can be circularly polarized, making them chiral. Chiral phonons carry angular momentum, which is observable in heat currents, and, via coupling to electron spin, in spin currents. Two-dimensional (2D) ha...
Rafał Bartoszewicz,Jakub Ziembicki,Ewelina Zdanowicz et al. Rafał Bartoszewicz et al.
One of the most intriguing properties of hybrid halide perovskites is their structural softness. The interplay between organic and inorganic sublattices leads to a multitude of physical phenomena that are not observed in conventional semiconductors such as III-V materials.
Jakob Möbs,Philip Klement,Lukas Gümbel et al. Jakob Möbs et al.
Lead halide perovskites and related hybrid metal halides exhibit exceptional semiconductor properties, enabling diverse applications in photovoltaics, solid-state lighting, and photocatalysis.
Bing Sun,Haolin Lu,Dezheng Yang et al. Bing Sun et al.
Magnetic materials are pivotal in spintronics, where the electron's spin is harnessed for information processing, potentially leading to faster and more efficient devices. Among the promising materials in this domain are magnetic organic-in...
Guangsheng Liu,Mehri Ghasemi,Qianwen Wei et al. Guangsheng Liu et al.
The lattice strain resulting from the fabrication process in hybrid organic-inorganic halide perovskites (HOIPs) and its dynamic changes under illumination are the key factors that affect the efficiency and intrinsic stability of HOIP-based solar cells....However, there is still a lack of comprehensive and in-depth understanding regarding how lattice strain influences the dynamic behavior and transport properties of charge carriers in organic-inorganic halide perovskites (HOIPs), as well as how light illumination triggers lattice strain.
Jia Nie,Guangjun Lu,Jiande Su et al. Jia Nie et al.
In recent years, organic-inorganic hybrid metal halide perovskites have attracted widespread attention in the field of optoelectronics due to their advantages such as high color purity, solution processability, and adjustable band gap.
Chinmay Barman,Rahul Murali,Venugopal Rao Soma et al. Chinmay Barman et al.
Precise control of the hot carrier (HC) relaxation dynamics in halide perovskites is crucial for optimizing the performance of optoelectronic applications requiring efficient energy harvesting and charge transport.
Xin-Yuan Gao,Xin-Ye Wu,Wei-Jia Wang et al. Xin-Yuan Gao et al.
Metal halide perovskites exhibit great promise for applications in solid-state lighting and flat-panel display technologies.
Lin Wang,Jie Ren,Hanying Li Lin Wang
Organic-inorganic hybrid halide perovskites have emerged as promising optoelectronic materials owing to their exceptional optoelectronic properties and versatile crystal structures.
Changjiang Shi,Haihua Zhang,Haolun Li et al. Changjiang Shi et al.
Hybrid lead halide perovskites present a promising alternative, with tunable bandgaps and cost-effective solution processing. However, halide migration in these materials causes spectral instability and luminescence shifts under operational conditions.
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