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干燥的杂化伊莫戈石纳米管作为具有可变表面积的固体:基于氮气吸附、水浸渍量热法和小角X射线散射之间的相关性对结构性质的深入了解。

Dried hybrid imogolite nanotubes as solids with a changeable surface area: an insight into textural properties based on the correlation between nitrogen gas adsorption, immersion calorimetry into water, and small angle X-ray scattering.

作者信息

Dhaini Ali, Geneste Amine, Alfadel Raad Fadwa, Picot Pierre, Martin-Gassin Gaelle, Prelot Benedicte, Gassin Pierre-Marie, Trens Philippe, Thill Antoine, Zajac Jerzy

机构信息

ICGM, UMR 5253, Univ. Montpellier, CNRS, ENSCM, Montpellier, France.

Université Paris-Saclay, CEA, CNRS, NIMBE, LIONS, 91191 Gif Sur Yvette, France.

出版信息

Phys Chem Chem Phys. 2024 Sep 18;26(36):23835-23845. doi: 10.1039/d4cp02396j.

DOI:10.1039/d4cp02396j
PMID:39230339
Abstract

Powdered samples of three imogolite materials with an inner surface covered with Si-CH groups (hybrid IMO-CH) were prepared by ambient drying at 323 K, freeze drying, and spray drying. Reliable estimates of the intra-tube (), inter-tube (), and inter-bundle () specific surface areas of these samples were inferred from a model-guided correlation between the results of measurements by small angle X-ray scattering (SAXS), nitrogen gas adsorption, and immersion calorimetry into water. Since the SAXS studies indicated no significant deformations of IMO-CH nanotubes upon drying, further studies by gaseous N adsorption at 77 K indicated the intra-tube and inter-bundle specific surface areas as being only accessible to this adsorbate. The outer curved surfaces of IMO nanotubes, including the inter-tube surface areas, were evaluated based on the calorimetric measurements of the enthalpy of immersion into water, using the enthalpy of immersion per unit surface area for a modelled curved surface of gibbsite as the conversion factor. Given the uncertainty in the determination of surface areas, the IMO-CH samples were found to possess the limiting values of specific surface areas ranging between 1150 and 1480 m g. In contrast to the two other materials, ambient-dried IMO-CH was characterized by the highest value of parameter due to the much smaller bundles formed by the constituent imogolite nanotubes. The accessibility of these surface areas, together with the hydrophobic and hydrophilic surface domains, was demonstrated to depend on the nature of the surrounding medium and the size of the adsorbing species.

摘要

通过在323K下进行常压干燥、冷冻干燥和喷雾干燥,制备了三种内表面覆盖有Si-CH基团的伊莫石材料(杂化IMO-CH)的粉末样品。通过小角X射线散射(SAXS)、氮气吸附和水浸量热法测量结果之间的模型引导关联,推断出这些样品的管内()、管间()和束间()比表面积的可靠估计值。由于SAXS研究表明干燥后IMO-CH纳米管没有明显变形,因此在77K下通过气态N吸附的进一步研究表明,管内和束间比表面积仅对该吸附质可及。基于水浸焓的量热测量,使用三水铝石模型曲面的单位表面积浸焓作为转换因子,评估了IMO纳米管的外曲面,包括管间表面积。考虑到表面积测定的不确定性,发现IMO-CH样品的比表面积极限值在1150至1480 m g之间。与其他两种材料相比,常压干燥的IMO-CH由于其组成的伊莫石纳米管形成的束小得多,其参数值最高。这些表面积的可及性,连同疏水和亲水表面域,被证明取决于周围介质的性质和吸附物种的大小。

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