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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Selective-Synthesis of High-Performance Single-Crystalline Sr2Nb2O7 Nanoribbon and SrNb2O6 Nanorod Photocatalysts
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Selective-Synthesis of High-Performance Single-Crystalline Sr2Nb2O7 Nanoribbon and SrNb2O6 Nanorod Photocatalysts

机译:高性能单晶Sr2Nb2O7纳米带和SrNb2O6纳米棒光催化剂的选择性合成

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Taking selective-synthesis of 1D single-crystalline Sr2Nb2O7 nanoribbons and SrNb2O6 nanorods as an example, we demonstrated a general approach to synthesize niobium-contained nanostructured photocatalysts via a facile hydrothermal process. This method is based on reactions between soluble/ insoluble metallic compounds and metallic oxide in the aqueous solution without using any organic dispersants or capping agents. The one-step technique is controllable and provides a simple, convenient, and innovative strategy for the preparation of niobate nanostructures and basically can be easily expanded to synthesize other materials with similar structure. Our results indicate that these as-synthesized 1D niobate nanostructures with larger BET surface areas possess higher photocatalytic activities for splitting pure water under UV light irradiation than those samples from the solid-state route.
机译:以一维单晶Sr2Nb2O7纳米带和SrNb2O6纳米棒的选择性合成为例,我们展示了一种通过简便的水热法合成含铌纳米结构光催化剂的通用方法。该方法基于水溶液中可溶/不可溶金属化合物与金属氧化物之间的反应,而无需使用任何有机分散剂或封端剂。一步法是可控的,为制备铌酸盐纳米结构提供了一种简单,方便和创新的策略,并且基本上可以轻松扩展以合成具有相似结构的其他材料。我们的结果表明,与固态途径的样品相比,这些具有较大BET表面积的合成的一维铌酸盐纳米结构具有更高的光催化活性,可在紫外光照射下分解纯水。

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