材料科学
纳米颗粒
金属有机骨架
薄膜
涂层
化学工程
分子
分析物
纳米技术
折射率
红外线的
光电子学
吸附
有机化学
光学
物理化学
物理
工程类
化学
作者
Zhihuan Li,Jianxi Liu,Xiaobin Yi,Wei Wu,Fanfan Li,Zhenkang Zhu,Haiqi Li,Junqin Shi,Yadong Xu,Feng Zhou,Weimin Liu
标识
DOI:10.1002/adfm.202109541
摘要
Abstract This paper reports a Fabry−Pérot (F–P) cavity constructed by metal–organic frameworks (MOFs) encapsulated with TiO 2 nanoparticles that can achieve selective sensing of chemicals. The MOFs‐based F–P cavity is fabricated by sequentially spray‐coating TiO 2 in HKUST‐1 thin films through a layer‐by‐layer deposition strategy. The bandwidth of the cavity is tuned over a broad range by adjusting the thickness and refractive index of the HKUST‐1⊃TiO 2 thin films with controllable TiO 2 size and concentration. Selective sensing of chemical vapors is demonstrated on the HKUST‐1⊃TiO 2 cavities which are attributed to enhanced interaction between hydroxyl groups on the surface of TiO 2 and the specific oxygen‐containing analytes. In addition, molecule dynamics simulation and infrared absorption spectrum characterization are conducted to elucidate the mechanism of enhanced sensing properties. Homogeneous encapsulation of functional guest pieces with smaller sizes in MOF films contributes to specific physical–chemical properties that benefit their device applications in optical communication and chemical sensing.
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