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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Insight into anions and cations effect on charge carrier generation and transportation of flake-like Co-doped ZnO thin films for stable PEC water splitting activity
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Insight into anions and cations effect on charge carrier generation and transportation of flake-like Co-doped ZnO thin films for stable PEC water splitting activity

机译:深入了解阴离子和阳离子对电荷载流子产生和运输的塑料型共掺杂ZnO薄膜的影响,用于稳定PEC水分解活性

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摘要

Developing a stable interface interaction between photoelectrode and electrolyte is crucial for achieving superior photoelectrochemical (PEC) water splitting activity. In this aspect, the contribution of anions and cations present in the electrolyte play a decisive role during its interaction with the solvent and surface functional groups on the developed photoelectrode, which greatly determine the charge carrier generation and transportation. Herein, we developed the flake-like Co (1.7 at.%)-doped ZnO (Co-ZnO) thin films by employing simultaneous RF and DC magnetron sputtering, which were post annealed at 250 degrees C for 2 h. The developed films were used to demonstrate the PEC activity under different aqueous electrolytes (KCl, KOH, NaOH, Na2SO3 and Na2SO4). Most importantly, owing to the promising flake-like features of Co-ZnO, efficient electrode-electrolyte interface interaction has been achieved for stable and improved PEC activity. In turn, detailed PEC activity in KCl, KOH and NaOH electrolytes demonstrated that K+ cations and OH- anions in KOH greatly influenced the photocurrents than KCl (Cl-) and NaOH (Na+) due to the high ionic conductive and diffusion properties. On the other hand, SO32- (Na2SO3) anions tailor the charge carrier generation by the advantage of hole scavenging activity compared to SO42- (Na2SO4). Comprehensively, our results provide new insight into the selection of aqueous electrolyte to improve the PEC water splitting activity through adopting the ionic conductivity and constructive interaction with photoelectrode.
机译:在光电电极和电解质之间开发稳定的界面相互作用对于实现优质光电化学(PEC)水分裂活性至关重要。在这方面,在电解质中存在的阴离子和阳离子的贡献在其与显影光电子上的溶剂和表面官能团相互作用期间起决定性的作用,这极大地确定了电荷载体产生和运输。在此,我们通过采用同时RF和DC磁控溅射在250℃下的250℃下退火2小时,通过采用同时RF和DC磁控管溅射而开发了片状CO(1.7 AT。%)掺杂的ZnO(Co-ZnO)薄膜。开发的薄膜用于证明不同水性电解质(KCl,KOH,NaOH,Na 2 SO 3和Na 2 SO 4)下的PEC活性。最重要的是,由于具有Co-ZnO的薄片状特征,已经实现了高效的电极 - 电解质界面相互作用,以实现稳定和改善的PEC活性。反过来,KCl,KOH和NaOH电解质中的详细PEC活性证明了由于高离子导电和扩散性能,KOH中的K +阳离子和OH-阴离子大大影响了光递比KCl(Cl-)和NaOH(Na +)。另一方面,SO32-(Na2SO3)阴离子通过孔清除活性的优点来定制电荷载流子,与SO42-(Na 2 SO 4)相比。全面地,我们的结果通过采用离子电导率和与光电极相互作用来改善PEC水分裂活性的新洞察。

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