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Influence of Monomer Connectivity Network Flexibilityand Hydrophobicity on the Hydrothermal Stability of Organosilicas

机译:单体连接性网络灵活性的影响和疏水性对有机硅水热稳定性的影响

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摘要

It is generally assumed that the hydrothermal stability of organically modified silica networks is promoted by high monomer connectivity, network flexibility, and the presence of hydrophobic groups in the network. In this study a range of organosilica compositions is synthesized to explore the extent to which these factors play a role in the hydrothermal dissolution of these materials. Compositions were synthesized from hexafunctional organically bridged silsesquioxanes (OR1)3Si–R–Si(OR1)3 (R = −CH2–, –C2H4–, –C6H12–, –C8H16–, –p-C6H4–; R1 = −CH3, –C2H5), tetrafunctional (OEt)2Si(CH3)–C2H4–Si(CH3)(OEt)2 and Si(OEt)4, trifunctional silsesquioxanes R′-Si(OMe)3 (R′=CH3, n-C3H7, cyclo-C6H11, phenyl), and bifunctional Si(i-C3H7)2(OMe)2. The bond strain, connectivity and hydroxyl concentration of all networks were estimated using 29Si cross-polarized magic angle spinning nuclear magnetic resonance and Fourier-transform infrared spectroscopy. The hydrophilicity was characterized by monitoring the water uptake of the materials in moisture treatments with thermogravimetric analysis, differential scanning calorimetry, and Fourier-transform infrared spectroscopy. The resistance of eachnetwork against hydrothermal dissolution in a water/1,5-pentanediolmixture at 80 °C and pH 1, 7, and 13 was analyzed with inductivelycoupled plasma optical emission spectroscopy and X-ray fluorescence.Bond strain appears to significantly increase the tendency to dissolveunder hydrothermal conditions. The stabilizing influences of increasedconnectivity and hydrophobicity were found to be weak.
机译:通常认为,有机改性的二氧化硅网络的水热稳定性是通过高单体连接性,网络柔性以及网络中疏水基团的存在来促进的。在这项研究中,合成了一系列有机二氧化硅成分,以探索这些因素在这些材料的水热溶解中发挥作用的程度。由六官能有机桥键倍半硅氧烷(OR1)3Si–R–Si(OR1)3(R = -CH2 –,– C2H4 –,– C6H12 –,– C8H16 –,– p-C6H4–; R1 = -CH3, –C2H 5 ),四官能(OEt) 2 Si(CH 3 )– C 2 H 4 –Si(CH 3 )(OEt) 2 和Si(OEt) 4 ,三官能倍半硅氧烷R'-Si( OMe) 3 (R'= CH 3 ,nC 3 H 7 ,环-C 6 H 11 ,苯基)和双官能Si(iC 3 H 7 2 (OMe ) 2 。利用 29 Si交叉极化魔角旋转核磁共振和傅里叶变换红外光谱法估算了所有网络的键应变,连通性和羟基浓度。通过用热重分析,差示扫描量热法和傅里叶变换红外光谱法监测水分处理中材料的吸水率来表征亲水性。每个电阻反对水热溶解在水/ 1,5-戊二醇中的网络在80°C和pH 1、7和13的混合物中进行电感分析耦合等离子体发射光谱和X射线荧光。键应变似乎大大增加了溶解的趋势在热液条件下。增加的稳定影响发现连接性和疏水性较弱。

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