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首页> 外文期刊>Beilstein Journal of Nanotechnology >Playing with covalent triazine framework tiles for improved CO2 adsorption properties and catalytic performance
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Playing with covalent triazine framework tiles for improved CO2 adsorption properties and catalytic performance

机译:发挥共价三嗪骨架砖的作用,以改善CO2吸附性能和催化性能

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The rational design and synthesis of covalent triazine frameworks (CTFs) from defined dicyano-aryl building blocks or their binary mixtures is of fundamental importance for a judicious tuning of the chemico-physical and morphological properties of this class of porous organic polymers. In fact, their gas adsorption capacity and their performance in a variety of catalytic transformations can be modulated through an appropriate selection of the building blocks. In this contribution, a set of five CTFs (CTF1–5) have been prepared under classical ionothermal conditions from single dicyano-aryl or heteroaryl systems. The as-prepared samples are highly micro-mesoporous and thermally stable materials featuring high specific surface area (up to 1860 msup2/sup·gsup?1/sup) and N content (up to 29.1 wt %). All these features make them highly attractive samples for carbon capture and sequestration (CCS) applications. Indeed, selected polymers from this series rank among the CTFs with the highest COsub2/sub uptake at ambient pressure reported so far in the literature (up to 5.23 and 3.83 mmol·gsup?1/sup at 273 and 298 K, respectively). Moreover, following our recent achievements in the field of steam- and oxygen-free dehydrogenation catalysis using CTFs as metal-free catalysts, the new samples with highest N contents have been scrutinized in the process to provide additional insights to their complex structure–activity relationship.
机译:从确定的二氰基-芳基结构单元或它们的二元混合物合理设计和合成共价三嗪骨架(CTF),对于明智地调节此类多孔有机聚合物的化学-物理和形态特性至关重要。事实上,它们的气体吸附能力和它们在各种催化转化的性能可以通过构造块的适当选择来调制。在这一贡献中,在经典的离子热条件下,由单个二氰基-芳基或杂芳基系统制备了一组五个CTF(CTF1-5)。所制备的样品是高度微介孔且热稳定的材料,具有高比表面积(高达1860 m 2 ·g ?1 )和N含量(高达29.1重量%)。所有这些功能使其成为极具吸引力的碳捕集与封存(CCS)应用样品。实际上,迄今为止,从该系列中选择的聚合物都属于文献报道的在环境压力下具有最高CO 2 吸收率的CTF(高达5.23和3.83 mmol·g ?1 分别为273 K和298 K)。此外,继我们在使用CTFs作为无金属催化剂的无蒸汽和无氧脱氢催化领域的最新成就之后,在此过程中对具有最高N含量的新样品进行了仔细研究,以提供其复杂的结构-活性关系的更多见解。 。

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