Rumyantseva Marina, Nasriddinov Abulkosim, Vladimirova Svetlana, Tokarev Sergey, Fedorova Olga, Krylov Ivan, Drozdov Konstantin, Baranchikov Alexander, Gaskov Alexander
Chemistry Department, Moscow State University, 119991 Moscow, Russia.
Nesmeyanov Institute of Organoelement Compounds of the Russian Academy of Sciences, 119991 Moscow, Russia.
Nanomaterials (Basel). 2018 Aug 29;8(9):671. doi: 10.3390/nano8090671.
In this work, the hybrids based on nanocrystalline SnO₂ or In₂O₃ semiconductor matrixes and heterocyclic Ru(II) complex are studied as materials for gas sensors operating at room temperature under photoactivation with visible light. Nanocrystalline semiconductor oxides are obtained by chemical precipitation with subsequent thermal annealing and characterized by XRD, SEM and single-point BET methods. The heterocyclic Ru(II) complex is synthesized for the first time and investigated by ¹H NMR, C NMR APT, MALDI-MS analysis, and UV-Vis spectroscopy. The HOMO and LUMO energies of the Ru(II) complex are calculated from cyclic voltammetry data. The hybrid materials are characterized by TGA-MS analysis and EDX mapping. The optical properties of hybrids are studied by UV-Vis spectroscopy in the diffuse reflection mode. The investigation of spectral dependencies of photoconductivity of hybrid samples demonstrates that the role of organic dye consists in shifting the photosensitivity range towards longer wavelengths. Sensor measurements demonstrate that hybrid materials are able to detect NO₂ in the concentration range of 0.25⁻2 ppm without the use of thermal heating under periodic illumination with even low-energy long-wavelength (red) light.
在本工作中,研究了基于纳米晶SnO₂或In₂O₃半导体基质与杂环Ru(II)配合物的杂化材料,作为在可见光光活化下于室温工作的气体传感器材料。通过化学沉淀并随后进行热退火获得纳米晶半导体氧化物,并通过XRD、SEM和单点BET方法对其进行表征。首次合成了杂环Ru(II)配合物,并通过¹H NMR、C NMR APT、MALDI-MS分析和UV-Vis光谱对其进行研究。根据循环伏安法数据计算Ru(II)配合物的HOMO和LUMO能量。通过TGA-MS分析和EDX映射对杂化材料进行表征。在漫反射模式下通过UV-Vis光谱研究杂化材料的光学性质。对杂化样品光电导率的光谱依赖性研究表明,有机染料的作用在于将光敏范围向更长波长移动。传感器测量表明,杂化材料能够在0.25⁻2 ppm的浓度范围内检测NO₂,在使用低能量长波长(红色)光进行周期性照明的情况下无需热加热。