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Upside-Down Molding Approach for Geometrical Parameter-Tunable Photonic Perovskite Nanostructures

ACS APPLIED MATERIALS & INTERFACES(2021)

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摘要
Considering that the periodic photonic nanostructures are commonly realized by expensive nanofabrication processes and the tunability of structure parameters is limited and complicated, we demonstrate a solution-processed upside-down molding method to fabricate photonic resonators on perovskites with a pattern geometry controllable to a certain extent. This upside-down approach not only reveals the effect of capillary force during the imprinting but also can control the waveguide layer thickness due to the inversion of the perovskite membranes.
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关键词
upside-down method,room-temperature nanoimprint,capillary force,geometric parameter regulation,distributed feedback lasers
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