Wang Suhui, Zhang Xu, Wang Yi, Guo Tengxiao, Cao Shuya
State Key Laboratory of NBC Protection for Civilian, Beijing 102205, China.
Nanomaterials (Basel). 2022 Jun 24;12(13):2180. doi: 10.3390/nano12132180.
As the core device of the miniature quantum dot (QD) spectrometer, the morphology control of the filter film array cannot be ignored. We eliminated strong interference from additives on the spectrum of a long-wave infrared (LWIR) QD filter film by selecting volatile additives. This work is significant for detecting targets by spectroscopic methods. In this work, a filter film with characteristic spectral bands located in the LWIR was obtained by the natural evaporation of QD ink, which was prepared by mixing various volatile organic solvents with HgSe QD-toluene solution. The factors affecting the morphology of HgSe LWIR films, including ink surface tension, particle size, and solute volume fraction, were the main focus of the analysis. The experimental results suggested that the film slipped in the evaporation process, and the multilayer annular deposition formed when the surface tension of the ink was no more than 24.86 mN/m. The "coffee ring" and the multilayer annular deposition essentially disappeared when the solute particles were larger than 188.11 nm. QDs in the film were accumulated, and a "gully" morphology appeared when the solute volume fraction was greater than 0.1. In addition, both the increase rate of the film height and the decrease rate of the transmission slowed down. The relationship between film height and transmission was obtained by fitting, and the curve conformed to the Lambert-Beer law. Therefore, a uniform and flat film without "coffee rings" can be prepared by adjusting the surface tension, particle size, and volume fraction. This method could provide an empirical method for the preparation of LWIR QD filter film arrays.
作为微型量子点(QD)光谱仪的核心器件,滤光膜阵列的形貌控制不容忽视。我们通过选择挥发性添加剂,消除了添加剂对长波红外(LWIR)量子点滤光膜光谱的强烈干扰。这项工作对于通过光谱方法检测目标具有重要意义。在这项工作中,通过将各种挥发性有机溶剂与HgSe量子点 - 甲苯溶液混合制备的量子点墨水自然蒸发,获得了特征光谱带位于长波红外波段的滤光膜。分析的主要重点是影响HgSe长波红外薄膜形貌的因素,包括墨水表面张力、粒径和溶质体积分数。实验结果表明,在蒸发过程中薄膜发生滑动,当墨水表面张力不超过24.86 mN/m时形成多层环形沉积。当溶质颗粒大于188.11 nm时,“咖啡环”和多层环形沉积基本消失。当溶质体积分数大于0.1时,薄膜中的量子点发生聚集,出现“沟壑”形貌。此外,薄膜高度的增加速率和透过率的降低速率均减缓。通过拟合得到了薄膜高度与透过率之间的关系,该曲线符合朗伯 - 比尔定律。因此,通过调节表面张力、粒径和体积分数,可以制备出无“咖啡环”的均匀平整薄膜。该方法可为长波红外量子点滤光膜阵列的制备提供一种经验方法。