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Tunable surface plasmon resonance frequencies of monodisperse indium tin oxide nanoparticles by controlling composition size and morphology

机译:通过控制组成尺寸和形态可调节单分散铟锡氧化物纳米粒子的表面等离子体共振频率

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摘要

Monodisperse indium tin oxide nanoparticles (ITO NPs) with high crystallinity have been synthesized by the rapid thermal injection method and the seed-mediated growth method. We demonstrate that the surface plasmon resonance (SPR) frequencies of ITO NPs can be manipulated from 1,600 to 1,993 nm in near-infrared band by controlling the composition, size, and morphology. The doping Sn concentration in ITO NPs could be controlled via changing the %Sn in the initial feed from 0% to 30%. The shortest SPR wavelength at 1,600 nm with 10% Sn doping concentration indicates highest free electron carrier concentration in ITO NPs, which has direct relationship with doping Sn4+ ions. Furthermore, we demonstrate that the SPR peaks can also be tuned by the size of ITO NPs in the case of uniform doping. Besides, compared with the ITO NPs, single crystalline ITO with nanoflower morphology synthesized through the one-pot method exhibit SPR absorption peak features of red-shifting and broadening.
机译:通过快速热注射法和种子介导的生长法合成了具有高结晶度的单分散氧化铟锡纳米粒子(ITO NPs)。我们证明,通过控制组成,大小和形态,可以在近红外波段中将ITO NP的表面等离子体共振(SPR)频率控制在1,600至1,993 nm之间。可以通过将初始进料中的%Sn从0%更改为30%来控制ITO NP中的Sn掺杂浓度。 Sn掺杂浓度为10%时,在1,600 nm处的SPR波长最短,表明ITO NPs中的自由电子载流子浓度最高,这与掺杂Sn 4 + 离子有直接关系。此外,我们证明了在均匀掺杂的情况下,SPR峰也可以通过ITO NP的大小进行调节。此外,通过单锅法合成的纳米花形态的单晶ITO与ITO NPs相比,具有红移变宽的SPR吸收峰特征。

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