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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Mesoporous silica modified luminescent Gd2O3:Eu nanoparticles: physicochemical and luminescence properties
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Mesoporous silica modified luminescent Gd2O3:Eu nanoparticles: physicochemical and luminescence properties

机译:中孔二氧化硅改性发光Gd2O3:Eu纳米粒子:物理化学和发光性能

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摘要

Highly colloidal Gd2O3:Eu nanoparticles (core-NPs) were synthesized by thermal decomposition via weak base at low temperature. The sol-gel chemical process was employed for silica layer surface coating to increase solubility, colloidal stability, biocompatibility, and non-toxicity at the ambient conditions. XRD results indicate the highly purified, crystalline, single phase, and cubic phase Gd2O3 nanocrystals. TEM image shows that the mesoporous thick silica layer was effectively coated on the core nanocrystals, which have irregular size with nearly spherical shape and grain size about 10-30nm. An absorption spectra and zeta potential results in aqueous media revealed that solubility, colloidal stability, and biocompatibility character were enhanced from core to core-shell structure because of silica layer surface encapsulation. The samples, demonstrated excellent photoluminescence properties (dominant emission (D0F2)-D-5-F-7 transition in the red region at 610nm), indicated to be used in optical bio-detection, bio-labeling, etc. The photoluminescence intensity of the silica shell modified core/shell NPs was suppressed relatively core-NPs; it indicates the multi-photon relaxation pathways arising from the surface coated high vibrational energy molecules of the silanol groups. The core/nSiO(2)/mSiO(2) nanocrystals display strong emission ((D0F2)-D-5-F-7) transition along with excellent solubility and biocompatibility, which may find promising applications in the photonic based biomedical field.
机译:高胶体GD2O3:EU纳米颗粒(核心NPS)通过低温下通过弱碱进行热分解合成。使用溶胶 - 凝胶化学方法用于二氧化硅层表面涂层,以提高环境条件下的溶解度,胶体稳定性,生物相容性和非毒性。 XRD结果表明高度纯化,结晶,单相和立方相Gd2O3纳米晶体。 TEM图像表明,中孔厚二氧化硅层有效地涂覆在芯纳米晶体上,其具有不规则的尺寸,具有几乎球形的形状和晶粒尺寸约10-30nm。含水介质的吸收光谱和Zeta电位结果显示,由于二氧化硅层表面封装,从核心 - 壳结构中增强了溶解度,胶体稳定性和生物相容性特征。样品,显示出优异的光致发光性质(在610nm的红色区域中的显性发射(D0F2)-5-F-7转变),表明用于光学生物检测,生物标记等。光致发光强度二氧化硅壳改性芯/壳NPS抑制了相对核心-NPS;它表示由硅烷醇基团的表面涂覆的高振动能量分子产生的多光子松弛途径。核/ NSIO(2)/ MSIO(2)纳米晶体显示出强发射((D0F2)-D-5-F-7)转变,以及优异的溶解度和生物相容性,其可以在光子基生物医学领域找到有前途的应用。

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