Yinghui Wang
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Healing Grain Boundaries With Carbon Nanotubes Enables Large-Area Red Tin-Based Perovskite LEDs
Zeyu Miao and Yinghui Wang contributed equally to this work. Z.Miao, Y.Wang, L.Wang, et al. “Healing Grain Boundaries With Carbon Nanotubes Enables Large-Area Red Tin-Based Perovskite LEDs.” Laser & Photonics Reviews (2026): e71132. https://doi.org/10.1002/lpor.71132 Conflicts of Interest The authors declare no conflicts of interest. Data Availability Statement The data that support the findings of this study are available on request from the corresponding author.
Visualizing carrier dynamics of a semiconductor film photodetector optimized by interface passivation
To enhance photodetector performance, transient absorption (TA) microscopy is employed for the first time, to the best of our knowledge, to investigate carrier diffusion in interface-passivated semiconductor polycrystalline films. TA analysis reveals that after passivation with DMMI-Cl, the carrier diffusion length in MASnBr3 polycrystalline films increases from 109 nm to 123 nm, while the diffusion coefficient improves from 0.119 cm2 s−1 to 0.151 cm2 s−1.
Pipemidic Acid–Based Organic Cocrystal Engineering for Targeted Infected Wound Healing
Abstract Click to copy section linkSection link copied! Organic cocrystal engineering has emerged as a powerful strategy for designing advanced multifunctional materials, especially in complicated biomedical applications that demand both adaptability and dynamic functionality. Among these, the treatment of infected wounds, characterized by bacterial colonization, oxidative stress, and impaired tissue regeneration, remains particularly challenging.
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