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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Water-Stable, Nonsiliceous Hybrid Materials with Tunable Porosity and Functionality: Bridged Titania-Bisphosphonates
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Water-Stable, Nonsiliceous Hybrid Materials with Tunable Porosity and Functionality: Bridged Titania-Bisphosphonates

机译:水稳态,非偏合式杂种材料,可调谐孔隙度和功能:桥接二氧化钛 - 双膦酸盐

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摘要

Combining the properties of organic and inorganic moieties with high surface areas and pore volumes offers endless possibilities to design materials adapted to a wide range of advanced applications. The vast majority of mesoporous hybrid materials are siliceous materials, and developing low-cost synthetic methodologies leading to water stable nonsiliceous hybrid materials with controlled texture and functionality is essential. We report here an original strategy for the synthesis of mesoporous bridged titaniabisphosphonate hybrids based on a one-step, templateless nonhydrolytic sol-gel route. The reaction of Ti((OPr)-Pr-i)(4) and a rigid bisphosphonate ester in the presence of Ac2O leads to the formation of TiO2 anatase nanorods cross-linked by fully condensed bisphosphonate groups. The porosity can be readily adjusted over a wide range by changing the reaction conditions, and very high specific surface areas (up to 720 m(2)g(-1)) and pore volumes (up to 1.85 cm(3)g(-1))can be reached. The texture is stable in aqueous media between pH 1 and pH 12. Furthermore, accessible functional organic groups can be easily incorporated using either functional bisphosphonates or easily available monophosphonate compounds. The accessibility of bipyridyl organic groups was checked by Cu2+ adsorption from aqueous solutions. The unique combination of texture, functionality, and stability displayed by bridged titania-bisphosphonates makes these promising materials complementary of other hybrid materials such as organosilicas, MOFs, or mesoporous metal phosphonates.
机译:结合高表面积和孔隙体积的有机和无机部分的性质,为设计适用于各种先进应用的材料提供无尽的可能性。绝大多数介孔的混合材料是硅质材料,开发出低成本的合成方法,导致水稳定的杂种混合材料,具有受控质地和功能是必不可少的。我们在此报告了一种基于一步,TemplaTeless Non水溶性溶胶 - 凝胶途径合成中孔桥钛磷酸杂交物的原始策略。 Ti((OPR)-PR-I)(4)和刚性双膦酸酯在AC 2 O存在下的反应导致通过完全缩合的双膦酸盐基团交联的TiO 2锐钛矿纳米棒的形成。通过改变反应条件,非常高的比表面积(高达720m(2)g(-1))和孔体积(高达1.85cm(3)g( - 1))可以达到。在pH1和pH12之间的水性介质中,纹理在水性介质中稳定。此外,可以使用官能团的双膦酸盐或容易获得的单膦酸盐化合物容易地掺入可接近的官能有机基团。通过Cu 2 +从水溶液中检测双吡啶基有机基团的可加工性。通过桥接二氧化钛 - 双膦酸盐显示的纹理,功能和稳定性的独特组合使得这些有希望的材料互补的杂种材料,例如有机硅,MOF或中孔金属膦酸盐。

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