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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Ultra-high-efficiency near-infrared Ga2O3:Cr(3+)phosphor and controlling of phytochrome
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Ultra-high-efficiency near-infrared Ga2O3:Cr(3+)phosphor and controlling of phytochrome

机译:超高效近红外GA2O3:Cr(3+)磷光体和植物的控制

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摘要

Phosphor-converted light-emitting diodes (LEDs) have recently become a promising candidate for next-generation devices used in agriculture and horticulture. In principle, they can overcome the limitations of regular daily sunshine. Here, the principle of LED-promoted plant growth was demonstrated by using the Ga2O3:Cr(3+)phosphor with an extremely high quantum yield of 92.4%. The detailed structural and luminescent properties were characterized using X-ray diffraction, temperature-dependent photoluminescence, and pressure-dependent photoluminescence. The results reveal the unique two electronic spin-forbidden transition emissions (R1 and R2) of the Ga2O3:Cr(3+)phosphor. Plant growth experiments were also conducted to evaluate the practical applications of the as-prepared phosphors, showing that they exhibit obvious positive effects on plants. This work reveals the important role of LEDs in agriculture and horticulture, as well as their potential practical applications.
机译:磷光体转换的发光二极管(LED)最近成为农业和园艺中使用的下一代设备的有希望的候选者。 原则上,他们可以克服常规日常阳光的局限性。 这里,通过使用GA2O3:Cr(3+)磷光体来证明LED促进的植物生长的原理,其荧光体极高的量子产率为92.4%。 使用X射线衍射,温度依赖性光致发光和压力依赖性光致发光来表征详细的结构和发光性能。 结果揭示了GA2O3:Cr(3+)磷光体的独特的两种电子自旋禁止过渡发射(R1和R2)。 还进行了植物生长实验,以评估原制磷光体的实际应用,表明它们对植物具有明显的积极作用。 这项工作揭示了LED在农业和园艺中的重要作用,以及它们的潜在实际应用。

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