2018
DOI: 10.1007/s10971-017-4566-x
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Preparation of tetraethoxysilane-based silica aerogels with polyimide cross-linking from 3, 3′, 4, 4′-biphenyltetracarboxylic dianhydride and 4, 4′-oxydianiline

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Cited by 24 publications
(16 citation statements)
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“…[ 31 ] Furthermore, the peak at 1062 cm −1 corresponds to the vibration of SiOSi of silica network. [ 13 ] The absorption bands at 3000–2850 cm −1 and the peak located at 837 cm −1 are attributed to the asymmetric and symmetric CH stretching vibration and the rocking vibration of CH 3 , respectively, indicating the introduction of BTMSPA and methyl‐rich MTMS in the aerogels. [ 33 ] The peaks observed at around 1236 and 782 cm −1 correspond to the deformation and stretching vibration of SiC bond, respectively, indicating that the silica network is cross‐linked with PI.…”
Section: Resultsmentioning
confidence: 99%
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“…[ 31 ] Furthermore, the peak at 1062 cm −1 corresponds to the vibration of SiOSi of silica network. [ 13 ] The absorption bands at 3000–2850 cm −1 and the peak located at 837 cm −1 are attributed to the asymmetric and symmetric CH stretching vibration and the rocking vibration of CH 3 , respectively, indicating the introduction of BTMSPA and methyl‐rich MTMS in the aerogels. [ 33 ] The peaks observed at around 1236 and 782 cm −1 correspond to the deformation and stretching vibration of SiC bond, respectively, indicating that the silica network is cross‐linked with PI.…”
Section: Resultsmentioning
confidence: 99%
“…H1 hysteresis loop can be observed in materials with uniformly distributed spherical particle aggregates or cylindrical mesopores, while H3 hysteresis loop is often reported for flake granular material or slit pore material. [ 13,31 ] Pore structure parameters of the hybrid aerogels are listed in Table 2 and pore size distributions are shown in Figure 5b. With the increase of silica sol volume, the specific surface area decreases from 422.0 to 186.5 m 2 g −1 , while the pore volume decreases from 3.24 to 0.63 cm 3 g −1 .…”
Section: Resultsmentioning
confidence: 99%
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“…This leads to severe modifications in the transport properties of the polymer, the permeability, and selectivity coefficients growing several times [83,84]. As a consequence, scCO2 is largely used in the production of nanoparticles, foams, aerogels, and membranes based on linear [85][86][87] or cross-linked [88][89][90][91][92] PIs. These materials have interesting features (high porosity, tunable shrinkage, nano-and micro-cavities, high surface area, ultralow dielectric constant, and mechanical resilience) that open up new possibilities in the applicability of PI-based systems such as catalytic systems, separation membranes, aviation, aerospace, construction, and others [93][94][95][96][97].…”
Section: Synthesis and Processing Of Pis In Supercritical Fluidsmentioning
confidence: 99%