Xu Shi-Long, Shen Shan-Cheng, Xiong Wei, Zhao Shuai, Zuo Lu-Jie, Wang Lei, Zeng Wei-Jie, Chu Sheng-Qi, Chen Ping, Lin Yue, Qian Kun, Huang Weixin, Liang Hai-Wei
Hefei National Laboratory for Physical Sciences at the Microscale, Department of Chemistry, University of Science and Technology of China, Hefei 230026, China.
Hefei National Laboratory for Physical Sciences at the Microscale, Key Laboratory of Surface and Interface Chemistry and Energy Catalysis of Anhui Higher Education Institutes, and CAS Key Laboratory of Materials for Energy Conversion and Department of Chemical Physics, University of Science and Technology of China, Hefei 230026, China.
Inorg Chem. 2020 Nov 2;59(21):15953-15961. doi: 10.1021/acs.inorgchem.0c02457. Epub 2020 Oct 21.
Catalytic biomass conversions are sustainable processes to produce value-added fuels and chemicals but need stable catalysts that can tolerate harsh hydrothermal conditions. Herein, we report a hydrothermally stable catalyst by alloying Pt with a high-melting-point metal Nb. The Pt/Nb alloy catalysts are prepared by H reduction at a high temperature of 900 °C with a high-surface-area carbon black support, which can suppress metal sintering at high temperatures and thus lead to small-sized alloyed Pt/Nb particles of only 2.2 nm. Taking the advantages of surface acid property provided by the Nb sites and the size effect, the prepared C-supported small-sized Pt/Nb alloy catalysts exhibit attractive activities for the hydrogenation of levulinic acid into γ-valerolactone and the water-gas shift reaction. More significantly, benefiting from the inherent stability of high-melting-point Nb, the Pt/Nb alloy catalysts show much enhanced hydrothermal stability compared to commercial Pt/C and Ru/C catalysts.
催化生物质转化是生产增值燃料和化学品的可持续过程,但需要能够耐受苛刻水热条件的稳定催化剂。在此,我们报道了一种通过将铂与高熔点金属铌合金化制备的水热稳定催化剂。铂/铌合金催化剂是在900℃的高温下用高比表面积炭黑载体通过氢还原制备的,这可以抑制高温下的金属烧结,从而得到仅2.2纳米的小尺寸合金化铂/铌颗粒。利用铌位点提供的表面酸性性质和尺寸效应的优势,制备的炭负载小尺寸铂/铌合金催化剂对乙酰丙酸加氢制γ-戊内酯和水煤气变换反应表现出有吸引力的活性。更重要的是,受益于高熔点铌的固有稳定性,与商业铂/炭和钌/炭催化剂相比,铂/铌合金催化剂表现出大大增强的水热稳定性。