4.7 Article

Bimetallic NiCu Alloy Catalysts for Hydrogenation of Levulinic Acid

期刊

ACS APPLIED NANO MATERIALS
卷 4, 期 4, 页码 3989-3997

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsanm.1c00339

关键词

biomass; NiCu alloy; straightforward synthesis; levulinic acid; gamma-valerolactone

资金

  1. Key-Area Research and Development Program of Guangdong Province [2019B110209003]
  2. National Natural Science Foundation of China [22078374, 21776324]
  3. Guangdong Basic and Applied Basic Research Foundation [2019B1515120058, 2020A1515011149]
  4. National Key R&D Program of China [2018YFD0800703, 2020YFC1807600]
  5. National Ten Thousand Talent Plan [201901]
  6. Fundamental Research Funds for the Central Universities [19lgzd25]
  7. Hundred Talent Plan from the Sun Yat-sen University [201602]

向作者/读者索取更多资源

This study presents a modified strategy to synthesize highly dispersed noble-metal-free bimetallic NiCu alloy nanoparticles for the selective hydrogenation of levulinic acid, in which the ligand effect between Ni and Cu plays a crucial role. The catalyst with a Ni/Cu ratio of 1:2 exhibited the best catalytic performance, achieving an outstanding yield of 93.9% for gamma-valerolactone.
Upgrading of the biomass-derived levulinic acid (LA) with the activation of carbonyl functional groups is a pivotal reaction in converting biomass into high-value-added products. Herein, we reported a modified strategy to synthesize highly dispersed noble-metal-free bimetallic NiCu alloy nanoparticles (NPs) from metal-organic frameworks for the selective hydrogenation of LA, in which the ligand effect between Ni and Cu plays a crucial role under relatively mild conditions. Among the tested catalysts, the catalyst with a Ni/Cu ratio of 1:2 presented the best catalytic performance in comparison with the homometallic Ni/Cu and bimetallic catalysts with different ratios; an outstanding yield of 93.9% was obtained for gamma-valerolactone (GVL). Both experimental studies and characterization analyses verified that the ligand effect is responsible for the excellent catalytic performance. A possible reaction pathway for the samples in the LA hydrogenation process is proposed; after dissociation of adsorbed H-2 on the NiCu alloy surface, reactant LA is adsorbed and activated by NPs with the formation of intermediate, and through a self-condensation reaction to form products. The straightforward synthesis, superior performance, and high stability make these noble-metal-free bimetallic NiCu nanoparticles very attractive for the transformation of various biomass-derived sources into valuable products.

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