首页> 外文期刊>ACS applied materials & interfaces >Influence of Sodium Halides (NaF, NaCI, NaBr, Nal) on the Photocatalytic Performance of Hydrothermally Synthesized Hematite Photoanodes
【24h】

Influence of Sodium Halides (NaF, NaCI, NaBr, Nal) on the Photocatalytic Performance of Hydrothermally Synthesized Hematite Photoanodes

机译:卤化钠(NaF,NaCl,NaBr,Nal)对水热合成赤铁矿光阳极光催化性能的影响

获取原文
获取原文并翻译 | 示例
       

摘要

It has been suggested that a high concentration of Fe~(3+) in solution, a low pH, and noncomplexing ions of high ionic strength are all essential for developing a high-quality hematite array. Our curiosity was piqued regarding the role of the electrolyte ions in the hydrothermal synthesis of hematite photoanodes. In this study, we prepared hematite photoanodes hydrothermally from precursor solutions of 0.1 M FeCl3 at pH 1.55 with a background electrolyte of 1.0 M sodium halide (NaF, NaCl, NaBr, or NaI). We compared the structures and properties of the as-obtained hematite photoanodes with those of the material prepared in 1.0 M NaNO3, the most widely adopted electrolyte in previous studies. Among our studied systems, we found that the hematite photoanode prepared in NaCl solution was the only one possessing properties similar to those of the sample obtained from the NaNO3 solution—most importantly in terms of photo electrochemical performance (ca. 0,2 mA/cm with +0.4 V vs SCE). The hematites obtained from the NaF, NaBr, and NaI solutions exhibited much lower (by approximately 2 orders of magnitude) photocurrent densities under the same conditions, possibly because of their relatively less ordered crystallinity and the absence of rodlike morphologies. Because the synthetic protocol was identical in each case, we believe that these two distinct features reflect the environments in which these hematite photoanodes were formed. Consistent with the latest studies reported in the literature of the X-ray photoelectron spectra of fast-frozen hematite colloids in aqueous solutions, it appears that the degree of surface ion loading at the electrolyte—hematite interface (Stern layer) is critical during the development of hematite photoanodes. We suspect that a lower ion surface loading benefits the hematite developing relatively higher-order and a rodlike texture, thereby improving the photoelectrochemical activity.
机译:有人提出,溶液中高浓度的Fe〜(3+),低pH值和高离子强度的非络合离子对于开发高质量的赤铁矿阵列都是必不可少的。我们好奇地询问了电解质离子在赤铁矿光阳极水热合成中的作用。在这项研究中,我们使用pH值为1.55的0.1 M FeCl3的前体溶液和1.0M卤化钠(NaF,NaCl,NaBr或NaI)作为背景电解质,以水热法制备赤铁矿光阳极。我们将获得的赤铁矿光阳极的结构和性能与在先前研究中采用最广泛的电解质1.0 M NaNO3中制备的材料进行了比较。在我们研究的系统中,我们发现在NaCl溶液中制备的赤铁矿光阳极是唯一具有与从NaNO3溶液中获得的样品相似的性质的属性-最重要的是在光电化学性能方面(约0.2 mA / cm) + 0.4 V vs SCE)。从NaF,NaBr和NaI溶液中获得的赤铁矿在相同条件下表现出低得多的光电流密度(大约2个数量级),这可能是因为它们的有序结晶度相对较低,并且没有棒状形态。因为在每种情况下合成方案都是相同的,所以我们认为这两个不同的特征反映了这些赤铁矿光阳极形成的环境。与文献中报道的速冻赤铁矿胶体在水溶液中的X射线光电子能谱的最新研究结果相一致,看来在开发过程中,电解质与赤铁矿界面(船尾层)的表面离子负载程度至关重要。赤铁矿光阳极。我们怀疑较低的离子表面负荷有利于赤铁矿发展相对较高阶和棒状织构,从而提高光电化学活性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号