School of Materials and Energy, Center for Applied Chemistry , University of Electronic Science and Technology of China , Chengdu 611731 , P. R. China.
School of Electrical Engineering and Electronic Information , Xihua University , Chengdu , Sichuan 610039 , P. R. China.
ACS Sens. 2019 Sep 27;4(9):2343-2350. doi: 10.1021/acssensors.9b00882. Epub 2019 Sep 6.
Designing sensing materials with novel morphologies and compositions is eminently challenging to achieve high-performance gas sensor devices. Herein, an in situ oxidative polymerization approach is developed to construct three-dimensional (3D) hollow quasi-graphite capsules/polyaniline (GCs/PANI) hierarchical hybrids by decorating protonated PANI on the surface of GCs; as a result, an immensely active and sensitive material was developed for sensing ammonia gas at room temperature. Moreover, the GCs possessed a capsule-like hollow/open structure with partially graphitized walls, and PANI nanospheres were uniformly decorated on the GC surfaces. Furthermore, the inflexible and rigid 3D ordered chemistry of these materials provides the resulting hybrids with a large interfacial surface area, which not only allows for rapid adsorption and charge transfer but also provides the necessary structural stability. The 3D hollow GCs/PANI hybrids exhibit excellent performance; the GCs/PANI-3 hybrid is highly sensitive (with a response value of 1.30) toward 10 ppm NH gas and has short response and recovery times of 34 and 42 s, respectively. The GCs/PANI-3 hybrid also demonstrates a good selectivity, repeatability, and long-term stability, which are attributed to the substantial synergistic effect of the GCs and PANI. The design of such a unique 3D ordered framework provides a promising pathway to achieve room-temperature gas sensors for commercial applications.
设计具有新颖形态和组成的传感材料,对于实现高性能气体传感器器件极具挑战性。在此,开发了一种原位氧化聚合方法,通过在 GCs 表面上装饰质子化的 PANI,构建了三维(3D)空心准石墨胶囊/聚苯胺(GCs/PANI)分级杂化材料;结果,开发出了一种用于室温下氨气传感的极具活性和灵敏度的材料。此外,GCs 具有部分石墨化壁的胶囊状空心/开式结构,并且 PANI 纳米球均匀地装饰在 GC 表面上。此外,这些材料的刚性和刚性 3D 有序化学结构为所得杂化材料提供了较大的界面表面积,这不仅允许快速吸附和电荷转移,而且还提供了必要的结构稳定性。3D 空心 GCs/PANI 杂化材料表现出优异的性能;GCs/PANI-3 杂化材料对 10 ppm NH3 气体具有高灵敏度(响应值为 1.30),并且响应和恢复时间分别为 34 和 42 s。GCs/PANI-3 杂化材料还表现出良好的选择性、重复性和长期稳定性,这归因于 GCs 和 PANI 的协同作用。这种独特的 3D 有序框架的设计为实现用于商业应用的室温气体传感器提供了有前途的途径。