Eken Korkut Sibel, Küçükkeçeci Hüseyin, Metin Önder
Department of Chemistry, College of Sciences , Koç University , Sarıyer , 34450 , Istanbul , Turkey.
Department of Chemistry, Faculty of Arts and Sciences , Yıldız Technical University , 34349 Istanbul , Turkey.
ACS Appl Mater Interfaces. 2020 Feb 19;12(7):8130-8139. doi: 10.1021/acsami.9b18917. Epub 2020 Feb 5.
A novel ternary nanocomposite, mesoporous graphitic carbon nitride/black phosphorus-AgPd (denoted mpg-CN/BP-AgPd), was successfully fabricated by assembling the as-prepared AgPd alloy nanoparticles (NPs) on mesoporous graphitic carbon nitride/black phosphorus (mpg-CN/BP) binary composites. This novel nanocomposite comprises a heterojunction support material formed by two distinct nonmetallic semiconductors (mpg-CN and BP) with adaptable band gaps and edge voltages, providing enhanced catalytic activity to AgPd alloy NPs in hydrogen generation from the methanolysis of ammonia borane (AB) compared to its single components under the blue light-emitting diode (LED) light illumination. The yielded mpg-CN/BP-AgPd ternary nanocomposites were characterized by many advanced analytical techniques (transmission electron microscopy (TEM), high-resolution TEM (HR-TEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), photoluminescence spectroscopy (PL), time-resolved spectroscopy, inductively coupled plasma-mass spectroscopy (ICP-MS), and fourier transform infrared (FTIR), and then they were tested as catalysts in hydrogen generation from the methanolysis of AB at room temperature. Several parameters such as the effect of mpg-CN/BP ratio, alloy composition, and type of the light source were studied to optimize the catalytic activity of the mpg-CN/BP-AgPd nanocomposites in the methanolysis of AB. The best catalytic activity of mpg-CN/BP-AgPd nanocomposites was obtained using an mpg-CN/BP ratio of 5/1 (wt/wt) and AgPd alloy composition under the blue LED illumination at room temperature. The activity of the ternary nanocomposites was further enhanced by the acetic acid treatment, and a high initial turnover frequency of 43.7 mol(H) mol(catalyst) min was reported. Besides their high catalytic activity, the mpg-CN/BP-AgPd nanocomposites were reusable catalysts in the methanolysis of AB. This study also included detailed kinetics of AB methanolysis catalyzed by mpg-CN/BP-AgPd nanocomposites.
通过将制备好的AgPd合金纳米颗粒(NPs)组装在介孔石墨相氮化碳/黑磷(mpg-CN/BP)二元复合材料上,成功制备了一种新型三元纳米复合材料——介孔石墨相氮化碳/黑磷-AgPd(记为mpg-CN/BP-AgPd)。这种新型纳米复合材料包含由两种具有可适应带隙和边缘电压的不同非金属半导体(mpg-CN和BP)形成的异质结载体材料,与在蓝光发光二极管(LED)光照下的单一组分相比,它能增强AgPd合金NPs在氨硼烷(AB)甲醇解制氢中的催化活性。通过多种先进分析技术(透射电子显微镜(TEM)、高分辨率TEM(HR-TEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)、光致发光光谱(PL)、时间分辨光谱、电感耦合等离子体质谱(ICP-MS)和傅里叶变换红外光谱(FTIR))对制备的mpg-CN/BP-AgPd三元纳米复合材料进行了表征,然后在室温下将它们作为AB甲醇解制氢的催化剂进行测试。研究了诸如mpg-CN/BP比例、合金组成和光源类型等几个参数,以优化mpg-CN/BP-AgPd纳米复合材料在AB甲醇解中的催化活性。在室温下蓝光LED光照下,使用mpg-CN/BP比例为5/1(重量/重量)和AgPd合金组成时,获得了mpg-CN/BP-AgPd纳米复合材料的最佳催化活性。通过乙酸处理进一步提高了三元纳米复合材料的活性,报道的初始周转频率高达43.7 mol(H) mol(催化剂)⁻¹ min⁻¹。除了具有高催化活性外,mpg-CN/BP-AgPd纳米复合材料还是AB甲醇解中的可重复使用催化剂。本研究还包括了mpg-CN/BP-AgPd纳米复合材料催化AB甲醇解的详细动力学。