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首页> 外文期刊>Tetrahedron >Synthesis and study of novel supramolecular nanocomposites containing aryl-imidazo-phenanthroline-based metallo-polymers (H-donors) and surface-modified ZnO nanoparticles (H-acceptors)
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Synthesis and study of novel supramolecular nanocomposites containing aryl-imidazo-phenanthroline-based metallo-polymers (H-donors) and surface-modified ZnO nanoparticles (H-acceptors)

机译:含芳基咪唑并菲咯啉基金属聚合物(H-给体)和表面改性ZnO纳米粒子(H-受体)的新型超分子纳米复合材料的合成与研究

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摘要

Four novel metallo-polymers (P1-P4) containing aryl-imidazo-phenanthrolines (AIP) ligands (incorporated with phenyl and fused-thiophene cores) were synthesized and characterized. Interestingly, P1-P4 exhibited electrochromism during the oxidation processes of cyclic voltammogram studies. In addition, P1-P4 were blended with surface-modified pyridyl-ZnO nanoparticles (ZnOpy as proton acceptors) to form nanocomposites, where P3-P4 were functionalized with carboxylic acid pendants (as proton donors) on the polymer backbones to study for the H-bonded effects on surface-modified ZnOpy nanoparticles. In order to investigate the nanocomposites containing metallo-polymers P1-P4 and surface-modified ZnOpy nanoparticles, nanocomposites P1-P4/ZnOpy were characterized by UV-visible (UV) absorption spectra, Fourier transform infrared (FT-IR), photoluminescence (PL) spectra, time-resolved photoluminescence decays, X-ray diffraction (XRD) measurements, and transmission electron microscopy (TEM) analyses. In contrast to nanocomposites P1/ZnOpy and P2/ZnOpy, higher crystallinities with a distinct layered-structure of H-bonded nanocomposites P3/ZnOpy and P4/ZnOpy in XRD measurements were induced by the introduction of surface-modified ZnOpy nanoparticles to metallo-polymers P3 and P4, correspondingly. Furthermore, due to the supramolecular interactions of surface-modified ZnOpy nanoparticles with metallo-polymers P3-P4, TEM images verified that ZnOpy nanoparticles were more homogeneously distributed in nanocomposites P3-P4/ZnOpy (with H-bonds) than those in P1-P2/ZnOpy (without H-bonds), respectively.
机译:合成并表征了四种新型的含芳基-咪唑并菲咯啉(AIP)配体(结合有苯基和稠合噻吩核)的金属聚合物(P1-P4)。有趣的是,P1-P4在循环伏安研究的氧化过程中表现出电致变色现象。此外,将P1-P4与表面改性的吡啶基-ZnO纳米粒子(ZnOpy作为质子受体)混合形成纳米复合材料,其中P3-P4在聚合物主链上被羧酸侧基(作为质子供体)官能化以研究H对表面改性的ZnOpy纳米粒子的键合效应。为了研究含有金属聚合物P1-P4和表面改性的ZnOpy纳米颗粒的纳米复合材料,通过紫外-可见(UV)吸收光谱,傅立叶变换红外(FT-IR),光致发光(PL)对纳米复合材料P1-P4 / ZnOpy进行了表征。光谱,时间分辨的光致发光衰减,X射线衍射(XRD)测量和透射电子显微镜(TEM)分析。与纳米复合材料P1 / ZnOpy和P2 / ZnOpy相比,通过在金属聚合物中引入表面改性的ZnOpy纳米颗粒,可以在X射线衍射中获得更高的结晶度,并具有显着的H键合纳米复合材料P3 / ZnOpy和P4 / ZnOpy分层结构。 P3和P4分别对应。此外,由于表面改性的ZnOpy纳米粒子与金属聚合物P3-P4的超分子相互作用,TEM图像证实ZnOpy纳米粒子在P3-P4 / ZnOpy纳米复合物中(具有H键)比在P1-P2中更均匀地分布。 / ZnOpy(无氢键)。

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