首页> 外文期刊>Photonics Technology Letters, IEEE >Enhanced Light Extraction Efficiency of GaN-Based LEDs With 3-D Colloidal-Photonic-Crystal Bottom Reflector
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Enhanced Light Extraction Efficiency of GaN-Based LEDs With 3-D Colloidal-Photonic-Crystal Bottom Reflector

机译:具有3D胶体光子晶体底部反射器的GaN基LED的提高的光提取效率

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In this letter, self-assembled polystyrene nano-spheres with a diameter of 193 nm were used to fabricate the 3-D colloidal-photonic-crystal (CPC) bottom reflector for blue GaN-based light-emitting diodes (LEDs). Experimentally, the key point is the hydrophilic treatment of substrate and immediately to disperse the suspension into the substrate at 30 °C. The equilibrium between the particle transport and crystallization in the aqueous solution helps CPCs to form a faced-centered-cubic phase when the solution temperature decreases. This will lead to the improvement of reflectivity due to reduced defects, such as dislocations and vacancies, in the CPCs. The light output intensity of the LEDs fabricated with a well-controlled 3-D-CPC bottom reflector increases by 219% compared to that of conventional LEDs without it.
机译:在这封信中,使用直径为193 nm的自组装聚苯乙烯纳米球来制造用于蓝色GaN基发光二极管(LED)的3-D胶体光子晶体(CPC)底部反射器。实验上,关键是对基材进行亲水处理,并立即在30°C下将悬浮液分散到基材中。当溶液温度降低时,水溶液中颗粒传输和结晶之间的平衡有助于CPC形成面心立方相。由于减少了CPC中的缺陷,例如位错和空位,这将导致反射率的提高。与没有它的常规LED相比,使用良好控制的3-D-CPC底部反射器制造的LED的光输出强度增加了219%。

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