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Photocatalytic properties of PbS/graphene oxide/polyaniline electrode for hydrogen generation

机译:PbS /氧化石墨烯/聚苯胺电极的光催化性能

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摘要

In this work, roll-graphene oxide (Ro-GO), polyaniline (PANI) nano/microparticles, and PbS nanoparticles were prepared by modified Hammer, oxidative polymerization, and chemical bath deposition methods, respectively. These nano/microstructures were characterized, optimized, and designed to form PbS/Ro-GO/PANI nano/microcomposite. Also, the ratios of PbS and Ro-GO were optimized, and the optimized composition of the used composite was 0.4 g PANI, 0.125 g Ro-GO, and 0.075 g PbS. The band gap values for PANI, PbS, Ro-GO, and PbS/Ro-GO/PANI rocomposite were 3, 1.13, 2.86, (1.16, 2) eV, respectively. Two photoelectrode assemblies, Au/PbS/Ro-GO/PANI and PbS/Ro-GO/PANI/ITO/glass were used for the photoelectrochemical (PEC) hydrogen generation. In the first assembly 45 nm- Au layer was sputtered on the surface of a disk of PbS/Ro-GO/PANI composite. For the second assembly, a disk of PbS/Ro-GO/PANI composite was glued on ITO glass using Ag-THF paste. The lifetime efficiency values were 64.2 and 43.4% for the first and second electrode for 2 h, respectively. Finally, the incident photon-to-current conversion efficiency (IPCE) and photon-to-current efficiency (ABPE) were calculated under monochromatic illumination conditions. The optimum IPCE efficiency at 390 nm was 9.4% and 16.17%, whereas ABPE % efficiency was 1.01% and 1.75% for Au/PbS/Ro-GO/PANI and PbS/Ro-GO/PANI/ITO/glass, respectively.
机译:在这项工作中,分别通过改进的Hammer,氧化聚合和化学浴沉积方法制备了氧化石墨烯(Ro-GO),聚苯胺(PANI)纳米/微粒和PbS纳米粒子。对这些纳米/微结构进行了表征,优化和设计,以形成PbS / Ro-GO / PANI纳米/微复合材料。此外,优化了PbS和Ro-GO的比例,所用复合材料的优化组成为0.4μgPANI,0.125μgRo-GO和0.075μgPbS。 PANI,PbS,Ro-GO和PbS / Ro-GO / PANI rocomposite的带隙值分别为3、1.13、2.86,(1.16、2)eV。两个光电极组件,Au / PbS / Ro-GO / PANI和PbS / Ro-GO / PANI / ITO /玻璃被用于光电化学(PEC)氢生成。在第一个组件中,在PbS / Ro-GO / PANI复合材料的圆盘表面上溅射45 nm- Au层。对于第二次组装,使用Ag-THF糊剂将一盘PbS / Ro-GO / PANI复合材料粘贴在ITO玻璃上。第一电极和第二电极在2?h的寿命效率值分别为64.2%和43.4%。最后,在单色照明条件下计算了入射光子-电流转换效率(IPCE)和光子-电流效率(ABPE)。在390 nm处,最佳IPCE效率为9.4%和16.17%,而Au / PbS / Ro-GO / PANI和PbS / Ro-GO / PANI / ITO /玻璃的ABPE%效率分别为1.01%和1.75%。

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