首页> 外文期刊>ACS applied materials & interfaces >Covalent and Non-covalent Conjugation of Few-Layered Graphene Oxide and Ruthenium(II) Complex Hybrids and Their Energy Transfer Modulation via Enzymatic Hydrolysis
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Covalent and Non-covalent Conjugation of Few-Layered Graphene Oxide and Ruthenium(II) Complex Hybrids and Their Energy Transfer Modulation via Enzymatic Hydrolysis

机译:通过酶水解的少数层石墨烯氧化物和钌(II)复合杂种和它们的能量转移调节的共价和非共价缀合

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摘要

Pyrene-containing ruthenium(II) tris-bipyridine complexes have been prepared. These complexes have been non-covalently attached onto the few-layered graphene oxide (GO) sheets through their high binding affinity for flat pi-surfaces. Alternatively, the reduced graphene oxide (rGO) sheets have also been covalently functionalized with the ruthenium(II) trisbipyridine complex. The prepared conjugates have been characterized by transmission electron microscopy (TEM), energy-dispersive X-ray analysis (EDX), X-ray diffraction (XRD), atomic force microscopy (AFM), Raman spectroscopy, thermogravimetric analysis (TGA), and UV-visible absorption spectroscopy. The energy transfer properties of the resulted conjugates between the graphene and transition metal complexes have been studied via esterase hydrolysis. The energy transfer efficiencies were found to vary with the separation between the donor and the acceptor units.
机译:已经制备了含芘的钌(II)Tris-Bi0吡啶配合物。 这些配合物通过对扁平PI-表面的高结合亲和力而非共价连接到几种层状的石墨烯氧化物(GO)片上。 或者,还通过钌(II)三苯吡啶复合物共价官能化石墨烯氧化物(RGO)片。 已经表征了制备的缀合物,其特征在于透射电子显微镜(TEM),能量分散X射线分析(EDX),X射线衍射(XRD),原子力显微镜(AFM),拉曼光谱,热重分析(TGA),以及 UV可见吸收光谱。 已经通过酯酶水解研究了石墨烯和过渡金属配合物之间所得缀合物的能量转移性质。 发现能量转移效率随供体和受体单元之间的分离而变化。

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