Tu Chang-Ching, Hoo Ji H, Böhringer Karl F, Lin Lih Y, Cao Guozhong
Opt Express. 2014 Mar 10;22 Suppl 2:A276-81. doi: 10.1364/OE.22.00A276.
We demonstrate red-emitting silicon quantum dot (SiQD) phosphors as a low-cost and environment-friendly alternative to rare-earth element phosphors or CdSe quantum dots. After surface passivation, the SiQD-phosphors achieve high photoluminescence quantum yield = 51% with 365-nm excitation. The phosphors also have a peak photoluminescence wavelength at 630 nm and a full-width-at-half-maximum of 145 nm. The relatively broadband red emission is ideal for forming the basis of a warm white spectrum. With 365-nm or 405-nm LED pumping and the addition of green- and/or blue-emitting rare-earth element phosphors, warm white LEDs with color rendering index ~95 have been achieved.
我们展示了发红光的硅量子点(SiQD)荧光粉,它是稀土元素荧光粉或CdSe量子点的一种低成本且环保的替代品。经过表面钝化后,SiQD荧光粉在365nm激发下实现了高光致发光量子产率 = 51%。这些荧光粉还具有630nm的峰值光致发光波长和145nm的半高宽。相对较宽的宽带红光发射非常适合作为暖白色光谱的基础。通过365nm或405nm的LED泵浦以及添加绿色和/或蓝色发光的稀土元素荧光粉,已实现显色指数约为95的暖白色发光二极管。