Wang Di, Liu Zhi, Hong Ye, Lin Chong, Pan Qingjiang, Li Li, Shi Keying
Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education, Key Laboratory of Physical Chemistry, School of Chemistry and Material Science, Heilongjiang University Harbin 150080 P. R. China
College of Advanced Agriculture and Ecological Environment, Heilongjiang University Harbin 150080 P. R. China
RSC Adv. 2020 Sep 17;10(57):34466-34473. doi: 10.1039/d0ra06250b. eCollection 2020 Sep 16.
By fine tuning the metal mole ratio, CoAl-LDHs (CA) with a 2D nanosheet structure were successfully prepared a one-step hydrothermal method using urea as both precipitator and pore-forming agent. The morphology of CA samples shows uniform and thin porous hexagonal nanosheets. In particular, CA2-1, prepared with the 2 : 1 molar ratio for Co and Al, respectively, has the highest surface area (54 m g); its average transverse size of platelets is 2.54 μm with a thickness of around 19.30 nm and inter-plate spacing of about 0.2 μm. The sample exhibits a high sensing performance (response value of 17.09) towards 100 ppm NO , fast response time (4.27 s) and a low limit of detection (down to 0.01 ppm) at room temperature. Furthermore, CA2-1 shows long -term stability (60 days) and a better selectivity towards NO at room temperature. The excellent performance of the fabricated sensor is attributed to the special hexagonal structure of the 2D thin nanosheets with abundant mesopores, where the active sites provide fast adsorption and transportation channels, promote oxygen chemisorption, and eventually decrease the diffusion energy barrier for NO molecules. Furthermore, hydrogen bonds between water molecules and OH could serve as a bridge, thus providing a channel for rapid electron transfer. This easy synthetic approach and good gas sensing performance allow CoAl-LDHs to be great potential materials in the field of NO gas sensing.
通过微调金属摩尔比,采用尿素作为沉淀剂和成孔剂,通过一步水热法成功制备了具有二维纳米片结构的CoAl-LDHs(CA)。CA样品的形态呈现出均匀且薄的多孔六边形纳米片。特别地,分别以Co和Al的摩尔比为2∶1制备的CA2-1具有最高的表面积(54 m²/g);其血小板的平均横向尺寸为2.54μm,厚度约为19.30nm,板间距约为0.2μm。该样品在室温下对100ppm NO₂表现出高传感性能(响应值为17.09)、快速响应时间(4.27s)和低检测限(低至0.01ppm)。此外,CA2-1在室温下显示出长期稳定性(60天)以及对NO₂具有更好的选择性。所制备传感器的优异性能归因于具有丰富中孔的二维薄纳米片的特殊六边形结构,其中活性位点提供了快速吸附和传输通道,促进了氧化学吸附,并最终降低了NO₂分子的扩散能垒。此外,水分子与OH之间的氢键可以作为桥梁,从而提供快速电子转移的通道。这种简便的合成方法和良好的气敏性能使得CoAl-LDHs在NO₂气敏领域具有巨大的潜在应用价值。