Mighri Rimeh, Turani-I-Belloto Kevin, Demirci Umit B, Alauzun Johan G
Institut Charles Gerhardt, Univ Montpellier, CNRS, ENSCM, 34095 Montpellier, France.
Institut Europeen des Membranes, IEM-UMR 5635, Univ Montpellier, ENSCM, CNRS, 34095 Montpellier, France.
Nanomaterials (Basel). 2023 Aug 22;13(17):2389. doi: 10.3390/nano13172389.
Carbon-doped boron nitride (denoted by BN/C) was prepared through the pyrolysis at 1100 °C of a nanostructured mixture of an alkyl amine borane adduct and ammonia borane. The alkyl amine borane adduct acts as a soft template to obtain nanospheres. This bottom-up approach for the synthesis of nanostructured BN/C is relatively simple and compelling. It allows the structure obtained during the emulsion process to be kept. The final BN/C materials are microporous, with interconnected pores in the nanometer range (0.8 nm), a large specific surface area of up to 767 m·g and a pore volume of 0.32 cm·g. The gas sorption studied with CO demonstrated an appealing uptake of 3.43 mmol·g at 0 °C, a high CO/N selectivity (21) and 99% recyclability after up to five adsorption-desorption cycles.
碳掺杂氮化硼(记为BN/C)是通过在1100℃下热解烷基胺硼烷加合物和氨硼烷的纳米结构混合物制备而成。烷基胺硼烷加合物作为软模板来获得纳米球。这种自下而上合成纳米结构BN/C的方法相对简单且引人注目。它能使乳液过程中形成的结构得以保留。最终的BN/C材料具有微孔结构,纳米级(0.8纳米)的相互连通的孔隙,高达767平方米/克的大比表面积以及0.32立方厘米/克的孔体积。用一氧化碳进行的气体吸附研究表明,在0℃时其吸附量可达3.43毫摩尔/克,具有较高的一氧化碳/氮气选择性(21),并且在多达五个吸附-解吸循环后具有99%的可回收性。