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High efficient and color rendering quantum dots optimized white light emitting diodes

机译:高效和显色量子点优化白光发光二极管

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Quantum dots applications in illuminants and displays have been offered a lot of expectations due to narrow and tunable emission band. Incompatibility between colloidal QDs and encapsulant and sensitivities to oxygen and moisture are still challenging for applying QDs in white light emitting diode (WLED) devices with high quality. We develop a strategy to incorporate red QDs in silica microspheres (MS) with porous structures by a non-chemical method to achieve luminescent microspheres (LMS). Due to the lattice structure of LMS maintaining large extent of QDs luminescent properties, the fabricated WLED integrated with as prepared LMS and commonly used YAG: Ce yellow phosphors demonstrates not only excellent quality white light on color coordinates (around 0.33 0.33), correlated color temperature (CCT) (5100 to 5500K), and color rendering index (CRI) (Ra=90, R9=95), but also high luminous efficiency reaching up to 142.5 lm/W at 10mA, which is the highest record in previous literatures for QDs optimized WLEDs, and high operational stability in different forward current. LMS technique revealed great potentials for applying QDs in high quality encapsulated WLED with good operational stability.
机译:由于狭窄和可调发射带,发光体和显示器中的量子点应用程序已经提供了很多期望。胶体QD和密封剂与氧气和湿度的敏感性之间的不相容性仍然具有挑战性,用于在具有高质量的白色发光二极管(WLED)器件中施加QD。我们开发一种通过非化学方法将红QD掺入二氧化硅微球(MS)中的策略,以实现发光微球(LMS)。由于LMS的晶格结构保持大程度的QDS发光特性,与准备的LMS和常用的YAG集成的制造的WLED:Ce黄色磷光体不仅表现出优质的彩色坐标(约0.33 0.33),相关色温(CCT)(5100至5500K),和显色指数(CRI)(RA = 90,R9 = 95),而且还具有高的发光效率在10毫安,这是在以前的文献为最高记录达到高达142.5流明/瓦QDS优化了WLED,以及不同前进电流的高运行稳定性。 LMS技术揭示了在高质量中施加QD的巨大潜力,其具有良好的操作稳定性。

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