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Functionalization of TiO_2 nanotubes with palladium nanoparticles for hydrogen sorption and storage

机译:钯纳米粒子对TiO_2纳米管的功能化以吸附和存储氢

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The use of hydrogen as an energy carrier is an attractive solution toward addressing global energy issues and reducing the effects of climate change. Design of new materials with high hydrogen sorption capacity and high stability is critical for hydrogen purification and storage. In this study, titanium dioxide nanotubes (TiO_2NTs) were modified with palladium nanoparticles (PdNPs) utilizing a facile photo-assisted chemical deposition approach. Electrochemical anodization was employed for the direct growth of TiO_2NTs. The PdNP functionalized TiO_2NTs (TiO_2NT/Pd) were characterized by scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) and X-ray diffraction (XRD). The hydrogen sorption behaviours and stability of the TiO_2NT/Pd nanocomposites were investigated and compared with nanoporous Pd networks that were deposited on a bulk titanium substrate (Ti/Pd) using cyclic voltammetry (CV) and chronoamperometry (CA). Our studies show that the TiO_2NT/Pd nanocomposites possess a much higher hydrogen storage capacity, faster kinetics for hydrogen sorption and desorption, and higher stability than the nanoporous Pd.
机译:使用氢作为能源载体是解决全球能源问题和减少气候变化影响的有吸引力的解决方案。具有高氢吸附能力和高稳定性的新材料的设计对于氢的纯化和存储至关重要。在这项研究中,二氧化钛纳米管(TiO_2NTs)修饰了钯纳米粒子(PdNPs),采用了一种简便的光辅助化学沉积方法。电化学阳极氧化法用于TiO_2NTs的直接生长。通过扫描电子显微镜(SEM),能量色散X射线能谱(EDS)和X射线衍射(XRD)对PdNP官能化的TiO_2NTs(TiO_2NT / Pd)进行了表征。研究了TiO_2NT / Pd纳米复合材料的氢吸附行为和稳定性,并与使用循环伏安法(CV)和计时电流法(CA)沉积在块状钛基底(Ti / Pd)上的纳米多孔Pd网络进行了比较。我们的研究表明,TiO_2NT / Pd纳米复合材料比纳米多孔Pd具有更高的储氢能力,更快的氢吸附和解吸动力学以及更高的稳定性。

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