铂对氧化锰基聚合物材料吸附 H2 动力学的影响

Hydrogen Pub Date : 2024-01-04 DOI:10.3390/hydrogen5010001
R. Pedicini, Michalis Sigalas
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引用次数: 0

摘要

最近的研究表明,基于氧化锰的材料在聚合物基质的支持下,即使反应动力学特别缓慢,也能在非弹性温度和压力条件下显示出令人感兴趣的 H2 吸收能力。因此,在本研究中,通过球磨技术将两种不同比例的铂(5 和 10 wt%)添加到含有 50 wt% 氧化锰的复合样品中,以验证添加催化剂的数量对吸收动力学的影响。通过 SEM-EDX 和 TEM 型态分析研究了催化剂数量对复合基质的影响,发现与含 5%铂的样品相比,铂的分布更加均匀。XRD 研究证实了聚合物的无定形结构和铂的结晶结构同时存在,而用 Sievert 方法进行的吸收测试则验证了 10% 铂样品的动力学反应更好。与此同时,我们还利用原子序数密度泛函理论(DFT)进行了建模研究。该研究的超细胞为 Mn22Pt2O48。H 原子的数量逐渐增加,从最初解吸能为 301 kJ/mol 的 2 个 H 原子(Mn22Pt2O48H2)开始,增加到 12 个 H 原子(Mn22Pt2O48H12)时的 211 kJ/mol。根据实验得出的 H2 吸收值(0.22 wt%),计算出各自的 H 原子数(n = 5),相应的解吸能约等于 273 kJ/mol。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pt Effect on H2 Kinetics Sorption in Mn Oxide-Based Polymeric Material
Recent studies have demonstrated how a material based on Mn oxide, supported by a polymeric matrix, shows an interesting H2 absorption capacity in non-drastic temperature and pressure conditions even if the reaction kinetics are particularly slow. In this study, therefore, two different percentages of Pt (5 and 10 wt%) were added to a composite sample, containing 50 wt% of Mn oxide, through a ball milling technique in order to verify the reduction in absorption kinetics of the quantity of added catalyst. The effect of the catalyst quantity on the composite matrix was investigated through morphological analyses of the SEM-EDX and TEM types, with which it was found that the distribution of Pt is more homogeneous compared to the sample containing 5%. XRD studies confirmed the simultaneous presence of the amorphous structure of the polymer and the crystalline structure of Pt, and absorption tests with the Sievert method verified a better kinetic reaction of the 10% Pt sample. In parallel, a modeling study, using the ab initio Density Functional Theory (DFT), was performed. The supercell for this study was Mn22Pt2O48. The number of H atoms gradually increased, starting from 2 (Mn22Pt2O48H2), where the initial desorption energy was 301 kJ/mol, to 211 kJ/mol for 12 H atoms (Mn22Pt2O48H12). From the experimental H2 absorption value (0.22 wt%), the number of respective H atoms was calculated (n = 5), and the corresponding desorption energy was equal to about 273 kJ/mol.
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