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首页> 外文期刊>ACS nano >Bottom-Up Synthesis of Liquid-Phase-Processable Graphene Nanoribbons with Near-Infrared Absorption
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Bottom-Up Synthesis of Liquid-Phase-Processable Graphene Nanoribbons with Near-Infrared Absorption

机译:自底向上合成具有近红外吸收能力的液相可加工石墨烯纳米带

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摘要

Structurally defined, long (>100 nm), and low-band-gap (similar to 1.2 eV) graphene nanoribbons (GNRs) were synthesized through a bottom-up approach, enabling GNRs with a broad absorption spanning into the near-infrared (NIR) region. The chemical identity of GNRs was validated by IR, Raman, solid-state NMR, and UV-vis-NIR absorption spectroscopy. Atomic force microscopy revealed well-ordered self-assembled monolayers of uniform GNRs on a graphite surface upon deposition from the liquid phase. The broad absorption of the low-band-gap GNRs enables their detailed characterization by Raman and time-resolved terahertz photoconductivity spectroscopy with excitation at multiple wavelengths, including the NIR region, which provides further insights into the fundamental physical properties of such graphene nanostructures.
机译:通过自下而上的方法合成了结构确定的长(> 100 nm)和低带隙(类似于1.2 eV)的石墨烯纳米带(GNR),从而使GNR具有广泛的吸收范围,涵盖了近红外(NIR) )地区。通过IR,拉曼光谱,固态NMR和UV-vis-NIR吸收光谱法验证了GNR的化学特性。原子力显微镜显示从液相沉积后,石墨表面上均匀GNR的有序自组装单层。低带隙GNR的广泛吸收使其能够通过拉曼光谱和时间分辨太赫兹光电导光谱法在包括NIR区域在内的多个波长激发下进行详细表征,从而进一步了解此类石墨烯纳米结构的基本物理性质。

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