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Swift heavy ion irradiation effect on Cu-doped CdS nanocrystals embedded in PMMA

机译:PMMA嵌入Cu掺杂Cds纳米晶体的Swift重离子辐照效应

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Semiconductor nanocrystals (NCs) have received much interest for their optical and electronic properties. When these NCs dispersed in polymer matrix, brightness of the light emission is enhanced due to their quantum dot size. The CdCuS NCs have been synthesized by chemical route method and then dispersed in PMMA matrix. These nanocomposite polymer films were irradiated by swift heavy ion (SHI) (100 MeV, Si~(+7) ions beam) at different fluences of 1 × 10~(10) and 1 × 10~(12) ions/cm~2 and then compared their structural and optical properties by XRD, atomic force microscopy, photoluminescence, and UV-Vis spectroscopy before and after irradiation. The XRD spectra showed a broad hump around 2θ ≈ 11.83° due to amorphous PMMA and other peaks corresponding to hexagonal structure of CdS nanocrystals in PMMA matrix. The photoluminescence spectra shows a broad peak at 530 nm corresponding to green emission due to Cu impurities in CdS. The UV-Vis measurement showed red shift in optical absorption and bandgap changed from 4-38-3-60 eV as the irradiation fluency increased with respect to pristine CdCuS nanocomposite polymer film.
机译:半导体纳米晶体(NCS)对其光学和电子性质的影响很大。当这些NCS分散在聚合物基质中时,由于它们的量子点尺寸,发光的亮度增强。 CDCUS NCS通过化学路线方法合成,然后分散在PMMA矩阵中。这些纳米复合材料聚合物薄膜通过Swift重离子(Shi)(100meV,Si〜(+7)离子)以不同的流量为1×10〜(10)和1×10〜(12)离子/ cm〜2然后通过XRD,原子力显微镜,光致发光和照射前后的UV-Vis光谱比较它们的结构和光学性质。由于无定形的PMMA和PMMA基质中CDS纳米晶体的六边形结构对应的无定形PMMA和其他峰值,XRD光谱在2θ≈11.83°上显示宽驼峰。光致发光光谱显示出530nm的宽峰,对应于Cd中Cu杂质引起的绿色发射。由于相对于原始CDCUS纳米复合聚合物膜的辐射流畅增加,UV-VIS测量显示出光学吸收和带隙的红色变化从4-38-3-60eV变化。

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