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首页> 外文期刊>ACS nano >Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional Metal-Organic Frameworks
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Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional Metal-Organic Frameworks

机译:以电活性三苯基的薄膜为主的基于二维金属 - 有机框架的薄膜

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摘要

Two-dimensional triphenylene-based metal organic frameworks (TP-MOFs) attract significant scientific interest due to their long-range order combined with significant electrical conductivity. The deposition of these structures as oriented films is expected to promote their incorporation into diverse optoelectronic devices. However, to date, a controlled deposition strategy applicable for the different members of this MOF family has not been reported yet. Herein, we present the synthesis of highly oriented thin films of TP-MOFs by vapor-assisted conversion (VAC). We targeted the M-CAT-1 series comprising hexahydroxytriphenylene organic ligands and metal-ions such as Ni2+, Co2+, and Cu2+. These planar organic building blocks are connected in-plane to the metal-ions through a square planar node forming extended sheets which undergo self-organization into defined stacks. Highly oriented thin Ni- and Co-CAT-1 films grown on gold substrates feature a high surface coverage with a uniform film topography and thickness ranging from 180 to 200 nm. The inclusion of acid modulators in the synthesis enabled the growth of films with a preferred orientation on quartz and on conductive substrates such as indium-doped tin oxide (ITO). The van der Pauw measurements performed across the M-CAT-1 films revealed high electrical conductivity values of up to 10(-3) S cm(-1) for both the Ni- and Co-CAT-1 films. Films grown on quartz allowed for a detailed photophysical characterization by means of UV-vis, photoluminescence, and transient absorption spectroscopy. The latter revealed the existence of excited states on a nanosecond time scale, sufficiently long to demonstrate a photoinduced charge generation and extraction in Ni-CAT-1 films. This was achieved by fabricating a basic photovoltaic device with an ITO/Ni-CAT-1/Al architecture, thus establishing this MOF as a photoactive material. Our results point to the intriguing capabilities of these conductive M-CAT-1 materials and an additional
机译:基于二维三苯基的金属有机框架(TP-MOF)由于它们的远程顺序而导致具有显着的科学兴趣。预计将这些结构的沉积预计将促进其掺入不同的光电器件。但是,迄今为止,尚未报告适用于该MOF系列的不同成员的受控沉积策略。在此,我们通过蒸气辅助转化(VAC)来介绍TP-MOF的高度取向薄膜。我们靶向了包含六羟基萘基联苯基有机配体和金属离子,如Ni2 +,CO 2 +和Cu2 +的M-Cat-1系列。这些平面的有机构件通过形成延伸的薄片的方形平面节点在平面上与金属离子连接到金属离子。在金基板上生长的高度取向薄的薄NI-和CAT-1薄膜具有高表面覆盖,具有均匀的薄膜形貌和厚度范围为180至200nm。在合成中包含酸调节剂使得在石英上具有优选的取向和在诸如掺杂铟掺杂的氧化锡(ITO)的导电基板上的膜的生长。在M-CAT-1薄膜上进行的范德庞武瓦测量显示Ni和Cat-1膜的高达10(-3)厘米(-1)的高电导率值。在石英上生长的薄膜允许通过UV-Vis,光致发光和瞬态吸收光谱进行详细的光物理表征。后者揭示了在纳秒的时间尺度上存在激发状态,足够长,以证明在Ni-Cat-1膜中的光诱导电荷产生和提取。这是通过用ITO / Ni-Cat-1 / Al架构制造基本光伏器件来实现的,从而将该MOF作为光活性材料建立。我们的结果指出了这些导电M-CAT-1材料的有趣能力和额外的

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