脱氢
钯
甲酸
催化作用
氢
化学
多相催化
无机化学
材料科学
光化学
有机化学
作者
A. Moreno,L.Q. Lobo,Luz María Martínez,Luis F. Bobadilla,Svetlana Ivanova,M.I. Domínguez,M.Á. Centeno
标识
DOI:10.1002/cctc.202500873
摘要
Abstract Carbon nitride, C 3 N 4 , was synthesized through thermal polycondensation of melamine with varying temperature and time conditions. This approach represents a cost‐effective, straightforward, and environmentally friendly synthetic method with lower energy consumption to obtain hierarchically structured carbon nitride. The resulting materials were subjected to comprehensive characterization to analyze their crystalline structure, textural properties, composition, and light absorption characteristics. To evaluate their catalytic potential, the supports were impregnated with different loadings of palladium (1, 5, and 10 wt%) as the active phase and tested in the decomposition of formic acid for hydrogen production in liquid phase at mild conditions. This study revealed that the structure and composition of the C 3 N 4 were highly dependent on the degree of polycondensation, which in turn was influenced by the temperature and the thermal synthesis process. The most promising catalytic performance was achieved with a support prepared by decomposing melamine at 650 °C for 4 h, followed by impregnation with 10 wt% Pd. Furthermore, a mechanistic study was conducted using operando DRIFTS‐MS to explore the plausible catalytic pathways for synthesizing formic acid via CO 2 hydrogenation using the aforementioned catalyst. This investigation highlights the potential of C 3 N 4 as a support, further demonstrating its versatility in the circular economy of formic acid.
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