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Exploration of Interfacial Porphine Coupling Schemes and Hybrid Systems by Bond-Resolved Scanning Probe Microscopy

机译:粘结扫描扫描探针显微镜探测界面卟啉偶联方案和混合系统的探讨

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The templated synthesis of porphyrin-based oligomers and heterosystems is of considerable interest for materials with tunable electronic gaps, photovoltaics, or sensing device elements. In this work, temperature-induced dehydrogenative coupling between unsubstituted free-base porphine units and their attachment to graphene nanoribbons on a well-defined Ag(111) support are scrutinized by bond-resolved scanning probe microscopy techniques. The detailed inspection of covalently fused porphine dimers obtained by invacuo on-surface synthesis clearly reveals atomistic details of coupling motifs, whereby also putative reaction intermediates are identified. Moreover, the covalent attachment of porphines at preferred locations of atomically precise armchair-type graphene nanoribbons is demonstrated.
机译:卟啉基低聚物和异质体系的模板合成对具有可调谐电子隙,光伏或传感装置元件的材料具有相当大的利益。 在该作品中,通过键分辨扫描探针显微镜技术仔细仔细地仔细审查未取代的自由碱卟啉单元之间及其对石墨烯纳米粘蛋白纳米烯纳米的附着的温度诱导的脱氢偶联。 通过Invacuo面向表面合成获得的共价熔化卟啉二聚体的详细检查清楚地揭示了偶联基序的原子细节,由此鉴定推定的反应中间体。 此外,证实了原子上的原子上的优选位置的卟啉的共价附接。

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