Department of Chemical Engineering, Delft University of Technology, Delft, The Netherlands.
Nanoscale. 2018 Apr 19;10(15):6884-6891. doi: 10.1039/c7nr07745a.
Recently various porous organic frameworks (POFs, crystalline or amorphous materials) have been discovered, and used for a wide range of applications, including molecular separations and catalysis. Silicon nanowires (SiNWs) have been extensively studied for diverse applications, including as transistors, solar cells, lithium ion batteries and sensors. Here we demonstrate the functionalization of SiNW surfaces with POFs and explore its effect on the electrical sensing properties of SiNW-based devices. The surface modification by POFs was easily achieved by polycondensation on amine-modified SiNWs. Platinum nanoparticles were formed in these POFs by impregnation with chloroplatinic acid followed by chemical reduction. The final hybrid system showed highly enhanced sensitivity for methanol vapour detection. We envisage that the integration of SiNWs with POF selector layers, loaded with different metal nanoparticles will open up new avenues, not only in chemical and biosensing, but also in separations and catalysis.
最近发现了各种多孔有机骨架(POF,结晶或无定形材料),并将其用于广泛的应用,包括分子分离和催化。硅纳米线(SiNWs)已被广泛研究用于各种应用,包括晶体管、太阳能电池、锂离子电池和传感器。在这里,我们展示了 POF 对 SiNW 表面的功能化,并探索了其对基于 SiNW 器件的电传感性能的影响。通过在胺修饰的 SiNWs 上进行缩聚反应,很容易实现 POF 的表面改性。通过浸渍氯铂酸和随后的化学还原,在这些 POF 中形成了铂纳米粒子。最终的杂化系统对甲醇蒸气检测表现出了高度增强的灵敏度。我们设想,将 SiNW 与负载不同金属纳米粒子的 POF 选择层集成,不仅将在化学和生物传感方面,而且在分离和催化方面开辟新的途径。