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Growth of CdS nanocrystallites on graphene oxide Langmuir-Blodgett monolayers

机译:CdS纳米微晶在氧化石墨烯Langmuir-Blodgett单层上的生长

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Large area GO-Cd composite Langmuir-Blodgett monolayers were transferred onto Si substrate by introducing Cd ~(2+) ions into the subphase. The changes in the behaviour of the Langmuir monolayer isotherm in the presence of Cd ~(2+) ions are attributed to changes in the microstructure and density of the GO sheets on the subphase surface. The uptake of Cd onto the GO monolayers and the effect of subsequent sulphidation were investigated by AFM, FTIR, Raman, XPS and HRTEM techniques. The incorporation of Cd into the GO monolayers causes some overlapping of sheets and extensive formation of wrinkles. Sulphidation of the GO-Cd sheets results in the formation of uniformly distributed CdS nanocrystallites on the entire basal plane of the GO monolayers. The de-bonding of Cd with oxygen functional groups results in a reduction of the wrinkles. The GO sheets function primarily as a platform for the interaction of metal ions with oxygen functionalities and their structure and characteristic features are not affected by either uptake of Cd or formation of CdS.
机译:通过将Cd〜(2+)离子引入亚相,将大面积的GO-Cd复合Langmuir-Blodgett单层转移到Si衬底上。在Cd〜(2+)离子存在下,Langmuir单层等温线的行为变化归因于亚相表面GO片的微观结构和密度的变化。通过AFM,FTIR,拉曼,XPS和HRTEM技术研究了GO单层上Cd的吸收以及随后硫化的影响。 Cd掺入GO单层中会导致片材重叠并大量形成皱纹。 GO-Cd片的硫化导致在GO单层的整个基面上形成均匀分布的CdS纳米微晶。 Cd与氧官能团的脱键作用可减少皱纹。 GO片材主要用作金属离子与氧官能团相互作用的平台,其结构和特征不受镉吸收或CdS形成的影响。

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