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首页> 外文期刊>ACS applied materials & interfaces >Superelastic Multifunctional Aminosilane-Crosslinked Graphene Aerogels for High Thermal Insulation, Three-Component Separation, and Strain/Pressure-Sensing Arrays
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Superelastic Multifunctional Aminosilane-Crosslinked Graphene Aerogels for High Thermal Insulation, Three-Component Separation, and Strain/Pressure-Sensing Arrays

机译:高热绝缘,三组分分离和应变/压力传感阵列的超弹性多官能氨基硅烷交联石墨烯气凝胶

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Aerogels have attracted great interest for their unique properties, but their mechanical brittleness and poor functionality highly limit their practical applications. Herein, we report unprecedented superelastic multifunctional aminosilane-crosslinked reduced graphene oxide (AC– rGO) aerogels that are prepared via a facile and scalable strategy involving simultaneous crosslinking and reducing of graphene oxide nanosheets with different kinds of aminosilanes via C–N coupling and hydrolytic polycondensation reactions. It is found that 3-aminopropyl(diethoxy)methylsilane (APDEMS) is the better choice to enhance hydrophobicity, elasticity, and other properties of the resulting aerogels compared with (3-aminopropyl)triethoxysilane. One APDEMS molecule plays three roles as a crosslinker, a reductant, and a hydrophobizing agent. An outstanding combination of high surface area, ultralow density, superhydrophobicity, supercompressibility, superelasticity, low thermal conductivity, ultrahigh absorption capacity for organic liquids, efficient three-component separation, and strain/pressure sensing has been achieved in a single APDEMS-crosslinked rGO aerogel for the first time. In addition, a flexible, highly sensitive, and moisture-resistant AC–rGO aerogel-based strain/pressure-sensing array for the effective detection of strain (0–80%)/pressure (10 Pa to 10 kPa) distributions and object shapes has been demonstrated.
机译:Aerogels对其独特的特性引起了极大的兴趣,但它们的机械脆性和功能差高度限制了其实际应用。在此,我们报告了前所未有的超弹性多官能氨硅烷 - 交联的还原的石墨烯(AC - RGO)气凝胶,其通过容易和可伸缩的策略制备,所述策略涉及通过C-N偶联的不同种类的氨基硅烷同时交联和减少石墨烯氧化物纳米片和水解缩聚反应。发现3-氨基丙基(二乙氧基)甲基硅烷(APDEMS)是与(3-氨基丙基)三乙氧基硅烷相比,提高所得气凝胶的疏水性,弹性和其他性能的更好选择。一个APDEMS分子作为交联剂,还原剂和疏水剂发挥了三种作用。高表面积,超级密度,超水性,超级压抑,超弹性,低导热率,用于有机液体,高效三组分分离和应变/压力传感的超高压吸收能力的优异组合,在单个APDEMS交联的RGO气凝胶中已经实现了高效的三组分分离和应变/压力传感首次。此外,柔性,高度敏感和耐湿性的AC-RGO气凝菌的应变/压力传感阵列,用于有效检测菌株(0-80%)/压力(10Pa至10kPa)分布和物体形状已经证明了。

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