基于多层薄膜的量子点填充光子晶体荧光性能的改进

Qingfei Meng, Lu Huang, Wei-min Shi, Yubin Zhu, Linjun Wang
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引用次数: 0

摘要

荧光填充光子晶体多层膜由于具有光子带隙和荧光发射特性而广泛应用于激光、传感、显示等领域。本文制备了由不同前体碳量子点填充的光子晶体。研究发现,在紫外光的激发下,填充荧光碳量子点的光子晶体具有光学可变特性。研究了碳量子点填充光子晶体在616、510和450 nm发射峰处的光学变化特性。与510 nm和450 nm相比,碳量子点在616 nm发射峰的荧光性能最好。利用510 nm碳量子点,研究了空穴半径R、空穴间隙d和空穴深度h对荧光填充光子晶体光学变性能的影响。结果表明,当R=400 nm, d=1.5 μm, h=200 nm时,荧光光子晶体的光变特性最强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement on fluorescent properties of photonic crystals filled by quantum dots based on multi-layer films
Fluorescence-filled photonic crystal multi-layer films are widely used in laser, sensing, display and other fields due to their photonic bandgap and fluorescence emission properties. In this paper, photonic crystals filled with carbon quantum dots from different precursors have been prepared. It is found that photonic crystals filled with fluorescent carbon quantum dots have optically variable properties excited by ultraviolet light. The optically variable properties of photonic crystals filled with carbon quantum dots at emission peaks of 616, 510 and 450 nm were studied. The fluorescent properties of carbon quantum dots at emission peaks of 616 nm were the best compared to 510 nm and 450 nm. The effects of hole radius R, hole gap d and hole depth h on optically variable properties of fluorescent filled photonic crystals were investigated using 510 nm carbon quantum dots. The results showed that the optically variable properties of fluorescent photonic crystals is strongest when R=400 nm, d=1.5 μm and h=200 nm.
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