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Biotinylation of ZnO Nanoparticles and Thin Films: A Two-Step Surface Functionalization Study

机译:ZnO纳米粒子和薄膜的生物素化:两步表面功能化研究

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This study reports ZnO nanoparticles and thin film surface modification using a two-step functionalization strategy. A small silane molecule was used to build up a stabilizing layer and for conjugation of biotin (vitamin B7), as a specific tag Biotin was chosen because it is a well-studied bioactive molecule with high affinity for avidin. ZnO nanoparticles were synthesized by electrochemical deposition under oxidizing condition, and ZnO films were prepared by plasma-enhanced metal-organic chemical vapor deposition Both ZnO nanoparticles and ZnO thin films were surface modified by forming a (3-mercaptopropyl)trimethoxysilane (MPTS) layer followed by attachment of a biotin derivate, lodoacetyl-PEG2-biotin molecule was coupled, to the thiol unit in MPTS through a substitution reaction Powder X-ray diffraction, transmission electron microscopy, X-ray photoemission electron microscopy, atomic force microscopy, X-ray photoelectron spectroscopy, and near-edge X-ray absorption fine structure spectroscopy were used to investigate the as-synthesized and funetionalized ZnO materials. The measurements showed highly crystalline materials in both cases with a ZnO handparticle diameter of about 5 nm and a grain size of about 45 nm for the as-grown ZnO thin films. The surface modification process resulted in coupling of silanes and biotin to both the ZnO nanoparticles and ZnO thin films. The two-step functionalization strategy has a high potential for specific targeting in bioimaging probes and for recognition studies in biosensing applications.
机译:这项研究报告了使用两步功能化策略的ZnO纳米颗粒和薄膜表面改性。使用一个小的硅烷分子来构建稳定层并缀合生物素(维生素B7),因为选择了生物素特异性标签,因为它是一种经过研究的,对亲和素具有高亲和力的生物活性分子。在氧化条件下通过电化学沉积合成ZnO纳米颗粒,并通过等离子体增强金属有机化学气相沉积制备ZnO膜ZnO纳米颗粒和ZnO薄膜均通过形成(3-巯基丙基)三甲氧基硅烷(MPTS)层进行表面改性通过附着生物素衍生物,将碘乙酰基-PEG2-生物素分子通过取代反应与MPTS中的硫醇单元偶联。粉末X射线衍射,透射电子显微镜,X射线光发射电子显微镜,原子力显微镜,X射线利用光电子能谱和近边缘X射线吸收精细结构光谱研究了合成后的功能化ZnO材料。测量结果显示,在两种情况下,高结晶度的材料均具有ZnO手动粒径约为5 nm的晶粒,且生长的ZnO薄膜的晶粒尺寸约为45 nm。表面改性过程导致硅烷和生物素偶联到ZnO纳米颗粒和ZnO薄膜上。两步功能化策略对于生物成像探针中的特异性靶向以及生物传感应用中的识别研究具有很高的潜力。

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