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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Spatial organization and optical properties of layer-by-layer assembled upconversion and gold nanoparticles in thin films
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Spatial organization and optical properties of layer-by-layer assembled upconversion and gold nanoparticles in thin films

机译:薄膜中逐层组装的上转换和金纳米粒子的空间组织和光学性质

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Multilayers of NaYF4:Yb,Tm@.NaYF4 upconversion nanoparticles (UCNPs), up to 10 UCNP/polyelectrolyte bilayers, were prepared using the layer-by-layer (LBL) method. The assembled thin films of UCNPs were found to display good stability of upconversion luminescence (UCL) upon 980 nm near-infrared (NIR) excitation. Moreover, LBL assembled films comprising four UCNP/polyelectrolyte bilayers and four gold nanoparticles (AuNP)/polyelectrolyte bilayers were prepared while adjusting their deposition order to give rise to three different spatial organizations of the two types of nanoparticles. The UV-vis-NIR extinction spectra and UCL emission spectra revealed that the spatial organization determined by the sequence of deposition influences the interaction between UCNPs and AuNPs and thus their optical properties. The alternating deposition of UCNP and AuNP layers appears to be the best way to preserve their "individual" properties, as a result of reducing both the agglomeration of AuNPs and the scattering of the 980 nm excitation light that results in an apparent quenching effect on the UCL of UCNPs. By contrast, with the same numbers of UCNP and AuNP layers, the successive deposition of UCNPs followed by the successive addition of AuNP result in more agglomeration of AuNPs leading to a broad surface plasmon resonance (SPR) band in the NIR region and also a significant quenching of the UCL intensity of UCNPs. This study demonstrates an easy and effective way to prepare NIR-responsive and plasmonic hybrid thin films with the possibility to tune their optical properties through spatially controlled organization of the nanoparticles.
机译:NaYF4:Yb,Tm.NaYF4上转换纳米粒子(UCNPs)的多层结构,使用逐层(LBL)方法制备,最多可达10个UCNP /聚电解质双层。发现组装好的UCNP薄膜在980 nm近红外(NIR)激发下显示出良好的上转换发光(UCL)稳定性。此外,制备LBL组装的膜,其包含四个UCNP /聚电解质双层和四个金纳米颗粒(AuNP)/聚电解质双层,同时调节其沉积顺序以产生两种类型的纳米颗粒的三种不同的空间组织。 UV-vis-NIR消光光谱和UCL发射光谱表明,由沉积顺序决定的空间组织会影响UCNP和AuNP之间的相互作用,从而影响其光学性能。 UCNP和AuNP层的交替沉积似乎是保留其“单个”特性的最佳方法,这是因为既减少了AuNP的团聚作用,又减少了980 nm激发光的散射,从而导致对ANP的明显淬灭作用。 UCNP的UCL。相比之下,使用相同数量的UCNP和AuNP层,连续沉积UCNP和随后添加AuNP会导致AuNP发生更多的团聚,从而在NIR区域产生宽的表面等离振子共振(SPR)带,并且UCNPs的UCL强度的猝灭。这项研究表明制备NIR响应和等离激元混合薄膜的一种简单有效的方法,并有可能通过纳米粒子的空间控制组织来调节其光学性能。

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