论文标题
化学结构对共轭微孔聚合物中水传播动力学的影响:中子光谱研究
Impact of chemical structure on the dynamics of mass transfer of water in conjugated microporous polymers: A neutron spectroscopy study
论文作者
论文摘要
如果氢燃料的清洁方法在技术上有效且在经济上可行,则氢燃料可以作为杰作,从而构想出强大的无碳经济难题。有机光催化材料(例如共轭微孔材料(CMP))是潜在的有吸引力的候选水,可以通过化学合成来调整水水平和光学带隙以及光学带隙以及孔隙率。 CMP的性能也取决于反应物,中间体和产品的传质。在这里,我们通过中子光谱法研究了水(H2O和D2O)的传质(H2O和D2O)和三乙胺的大乙胺。我们发现,CMP的节点的刚度与捕获水的增加相关,反映出的运动太慢而无法通过准弹性中子散射(Qens)来量化。我们的研究强调,添加极性磺基群会导致水与CMP之间的其他相互作用,这是通过非弹性中子散射(INS)证明的,从而导致水的平移扩散的变化,这是根据Qens测量确定的。在本研究中,CMP中无法观察到三乙胺运动的变化。
Hydrogen fuel can contribute as a masterpiece in conceiving a robust carbon-free economic puzzle if cleaner methods to produce hydrogen become technically efficient and economically viable. Organic photocatalytic materials such as conjugated microporous materials (CMPs) are potential attractive candidates for water splitting as their energy levels and optical bandgap as well as porosity are tunable through chemical synthesis. The performances of CMPs depend also on the mass transfer of reactants, intermediates and products. Here, we study the mass transfer of water (H2O and D2O), and of triethylamine used as a hole scavenger for hydrogen evolution, by means of neutron spectroscopy. We find that the stiffness of the nodes of the CMPs is correlated with an increase in trapped water, reflected by motions too slow to be quantified by quasi-elastic neutron scattering (QENS). Our study highlights that the addition of the polar sulfone group results in additional interactions between water and the CMP, as evidenced by inelastic neutron scattering (INS), leading to changes in the translational diffusion of water, as determined from the QENS measurements. No changes in triethylamine motions could be observed within CMPs from the present investigations.