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Functionalized graphene oxide as an efficient adsorbent for CO2 capture and support for heterogeneous catalysis

机译:官能化的石墨烯氧化物作为CO 2捕获的有效吸附剂和对非均相催化的支持

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We have designed new imine-functionalized graphene oxide (IFGO) through post synthetic modifications involving co-condensation of 3-aminopropyltriethoxysilane with graphene oxide basal plane containing hydroxyl and epoxy functional groups, followed by Schiff base condensation reaction with 2,6-diformyl-4-methylphenol and impregnation of copper( II ) to it through covalent attachment (Cu-IFGO). Powder X-ray diffraction, N _(2) sorption analysis, FT-IR, HR-TEM, FE-SEM and TGA/DTA analysis are employed to characterize the materials. The IFGO material exhibits good CO _(2) storage capacity of 8.10 mmol g ~(?1) (35.64 wt%) and 2.10 mmol g ~(?1) (9.24 wt%) at 273 K and 298 K temperature, respectively, up to 3 bar pressure, suggesting its potential application in environmental clean-up. Also, Cu-IFGO showed high catalytic activity in microwave-assisted one-pot three-component C–S coupling reactions for a diverse range of aryl halides with thiourea and benzyl bromide in aqueous medium to obtain aryl thioether products (maximum yield 86%), which are derivatives of natural products. Moreover, having imine and hydroxyl groups in functionalized graphene oxide, the grafted Cu( II ) chelated at the graphene oxide surface so strongly that it could not be leached out from the material during the course of the coupling reaction. Thus, it displayed very small decrease in product yield up to the sixth reaction cycle suggesting a sustainable future of this Cu( II )-grafted catalyst.
机译:我们设计了新的亚胺官能化的石墨烯氧化物(IFGO),涉及用含有羟基和环氧官能团的石墨烯氧化物基础平面的3-氨基丙基三乙氧基硅烷的合成改性。随后是席克铵缩合反应,与2,6-二甲基-4 - 通过共价附着(Cu-Ifgo),甲基苯酚和铜(II)浸渍(II)。粉末X射线衍射,N _(2)吸附分析,FT-IR,HR-TEM,Fe-SEM和TGA / DTA分析用于表征材料。 IFGO材料在273 k和298k的温度下,IFGO材料表现出8.10mmol g〜(α1)(35.64wt%)和2.10mmol g〜(α1)(9.24wt%)的储存容量,最多3巴压力,暗示其在环境清理中的潜在应用。此外,Cu-Ifgo在微波辅助的单罐三组分C-S偶联反应中显示出高催化活性,用于在水性介质中具有硫脲和苄基溴的各种芳基卤化物,得到芳基硫醚产物(最大收率86%) ,这是天然产品的衍生物。此外,在官能化的石墨烯氧化物中具有亚胺和羟基,将接枝的Cu(II)螯合在氧化烯氧化物表面上,因此在偶联反应过程中不能从材料中浸出。因此,它表现出迄今为止的产量的速度较小至第六反应循环,提示该Cu(II) - 移植催化剂的可持续未来。

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