Langmuir. 2018 Jul 24;34(29):8499-8507. doi: 10.1021/acs.langmuir.8b01499. Epub 2018 Jul 10.
Scheelite-structure tungstates with unique structural features and excellent luminescence possess promising applications, such as light-emitting diodes (LEDs), scintillators, and displays. The controllable growth of high quality and uniform composition thin films mounted on cheap substrates is a key factor to realize the above commercial applications, however, which is also a big challenge due to the difficult stress release stemming from intrinsic lattice mismatches. Here, we employed the simple and composition-controlled polymer-assisted deposition (PAD) method to successfully obtain a series of high quality and well-proportioned BaWO:Eu (BWOE) thin films with red emission. Screening out the unbound freedom metal ions by poly(ether imide) (PEI) and ethylene diamine tetraacetic acid (EDTA), the firmly bound metal ions (Ba, W and Eu) in polymer solution were applied to accurately control the chemical composition and effectively governed the release of stress during the growth process of BWOE thin films. Furthermore, XRD, SEM and EDS mapping detections evidently authenticated the quasi-single crystallinity, uniform morphology and well-distributed composition of as-grown thin films. Additionally, excited by 250 nm light, these thin films could efficiently produce the red emission, peaked at around 612 nm originated from the D → F transition of Eu. Moreover, the optimal doping concentration of thin films was confirmed to be 9% and corresponding Commission International de l'Eclairage (CIE) chromaticity coordinate was (0.618, 0.365), which evidently implied the excellent color rending index. Therefore, this work highlights the rather superior PAD method to prepare uniform and high-quality BWOE thin films, which can be expanded toward the other photoelectric devices including white lighted-emitting diodes, scintillators, displays, and photoelectric detectors.
具有独特结构特征和优异发光性能的白钨矿结构钨酸盐在发光二极管 (LED)、闪烁体和显示器等领域具有广阔的应用前景。在廉价衬底上可控生长高质量、成分均匀的薄膜是实现上述商业应用的关键因素,但由于固有晶格失配导致的应力释放困难,这也是一个巨大的挑战。在这里,我们采用简单且成分可控的聚合物辅助沉积 (PAD) 方法,成功地获得了一系列具有红色发射的高质量和均匀组成的 BaWO:Eu(BWOE)薄膜。通过聚醚酰亚胺 (PEI) 和乙二胺四乙酸 (EDTA) 筛选出未结合的自由金属离子,聚合物溶液中牢固结合的金属离子 (Ba、W 和 Eu) 被用于精确控制化学组成,并在 BWOE 薄膜生长过程中有效控制应力释放。此外,XRD、SEM 和 EDS 映射检测明显证实了所生长薄膜的准单晶、均匀形貌和良好分布的组成。此外,用 250nm 光激发时,这些薄膜可以有效地产生红色发射,峰值位于约 612nm,源于 Eu 的 D → F 跃迁。此外,薄膜的最佳掺杂浓度被确认为 9%,对应的国际照明委员会 (CIE) 色度坐标为 (0.618, 0.365),这明显表明了优异的显色指数。因此,这项工作突出了 PAD 方法在制备均匀、高质量 BWOE 薄膜方面的优越性,该方法可扩展到包括白光 LED、闪烁体、显示器和光电探测器在内的其他光电器件。