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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Core-shell nanophosphor with enhanced NIR-visible upconversion as spectrum modifier for enhancement of solar cell efficiency
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Core-shell nanophosphor with enhanced NIR-visible upconversion as spectrum modifier for enhancement of solar cell efficiency

机译:具有增强的近红外可见光上转换的核壳纳米磷光体,作为用于提高太阳能电池效率的光谱调节剂

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摘要

A distinct enhancement of upconversion luminescence from core to core/shell (C/S) structure under low flux near infrared (NIR) excitation at 976 nm has been achieved in lanthanide (Er ~(3+), Yb ~(3+))-doped NaYF 4 core with undoped NaYF4 shell nanoparticles (NP). A green chemistry approach has been taken to synthesize monodisperse monophasic C/S NP with the core (~20 nm) and shell (~5 nm) crystallizing into cubic phase. Hydrophobic C/S NP have been further made hydrophilic by coating a transparent SHMP layer without affecting luminescence. C/S (NaYF _4: Er, Yb/NaYF _4) NP integrated dye-sensitized solar cell indicated 11.9% enhancement in overall conversion efficiency under AM 1.5 conditions, due to NIR-visible spectrum modification by fluorescent NPs. The results indicate great potential of such upconverting C/S nanophosphor in solar cell applications.
机译:镧系元素(Er〜(3+),Yb〜(3+))在976 nm低通量近红外(NIR)激发下从核到核/壳(C / S)结构的上转换发光显着增强。掺杂的NaYF4核与未掺杂的NaYF4壳纳米粒子(NP)。已经采取了绿色化学方法来合成单分散单相C / S NP,其核(〜20 nm)和壳(〜5 nm)结晶为立方相。通过涂覆透明的SHMP层而使疏水性C / S NP进一步亲水,而不影响发光。 C / S(NaYF _4:Er,Yb / NaYF _4)NP集成染料敏化太阳能电池表明,在AM 1.5条件下,总的转化效率提高了11.9%,这是由于荧光NP对NIR可见光谱的修饰。结果表明这种上转换的C / S纳米磷光体在太阳能电池应用中具有巨大的潜力。

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