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A Surface Study of Ultrathin Ceria Nanoparticles Decorated with Transition-Metal Ions

机译:过渡金属离子装饰超薄二氧化铈纳米粒子的表面研究

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A wide range of nanoparticle properties can be tuned by changing their surface characteristics, especially when dealing with ultrathin nanomaterials. Surface modification with transition-metal ions may affect a variety of the nanoparticles' properties including the surface charge, the electronic structure, and the electrical and optical characteristics. In this work, a surface study of ceria nanoparticles modified by attachment of various transition-metal ions to their surface is conducted. Characterization of the decorated particles as well as of the modifying transition-metal ion is carried out using zeta potential in organic solution, UV-Vis absorption, and electron paramagnetic resonance measurements, together with isothermal titration calorimetry, X-ray photoelectron spectroscopy, and energy dispersive X-ray spectroscopy. All measurements confirm the attachment of the cation to the surface of ceria, both in solid state and in colloidal suspension. It is suggested that the modifying ion-complex attaches to ceria both via chemical or strong physical interactions and weak physical interactions, demonstrated by a case-study modification of ceria using a copper-oleylamine complex. The metalization has a significant effect on the surface charge of the nanoparticles by shifting the zeta potential to more positive values and on the optical properties of the modifying transition-metal ions by red-shifting their absorption peak.
机译:通过改变它们的表面特性,尤其是在处理超薄纳米材料时,可以通过改变各种纳米颗粒性能。具有过渡金属离子的表面改性可能影响各种纳米颗粒的性质,包括表面电荷,电子结构和电气和光学特性。在这项工作中,通过将各种过渡金属离子连接到其表面的Ceria纳米颗粒的表面研究。使用Zeta电位在有机溶液,UV-Vis吸收和电子顺笔谐振测量中进行装饰颗粒以及改性过渡金属离子的表征,以及等温滴定热量,X射线光电子谱和能量分散X射线光谱。所有测量结果确认阳离子在固态和胶体悬浮液中均匀地连接到二氧化铈表面。建议通过化学或强物理相互作用和弱的物理相互作用,通过化学或弱的物理相互作用,改性离子复合物附着于二氧化铈。金属化对纳米颗粒的表面电荷具有显着影响,通过将ζ电位移位到更高的阳性值以及通过红色移位的吸收峰来改变过渡金属离子的光学性质。

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