Shoosri Tanyarat, Chotiwilaiwan Pisacha, Rattanapornchaiwat Tanisorn, Teerawatananond Thapong, Miyake Takanori, Panpranot Joongjai, Weerachawanasak Patcharaporn
Department of Chemistry, School of Science, King Mongkut's Institute of Technology Ladkrabang Bangkok 10520 Thailand
College of Innovation and Industrial Management, King Mongkut's Institute of Technology Ladkrabang Bangkok 10520 Thailand.
RSC Adv. 2024 Dec 2;14(51):38232-38244. doi: 10.1039/d4ra07162j. eCollection 2024 Nov 25.
Bimetallic Cu-Ni phyllosilicates (Cu-NiPS) with various Ni/Cu ratios (5 : 15, 10 : 10, 15 : 5 wt%) were synthesized using ammonia evaporation hydrothermal method to obtain copper-rich or nickel-rich Cu-Ni alloys. These catalysts were evaluated for the selective hydrogenation of furfural (FF) to furfuryl alcohol (FA) in the liquid phase under relatively mild conditions (100 °C, 20 bar H). The bimetallic Cu-NiPS catalysts exhibited excellent dispersion of the Ni-Cu alloy with average particle sizes ranging from 3.8 to 4.8 nm and demonstrated significantly enhanced catalytic performance over the monometallic nickel phyllosilicate (20% NiPS). The copper-rich Ni-Cu alloy (15% Cu-5% NiPS) exhibited the highest FF conversion efficiency (88%) and FA selectivity (90%). This superior performance is attributed to its smallest particle size, higher proportion of Cu and the synergistic interactions between Ni and Cu. This synergy effectively stabilizes the carbonyl group while promoting efficient H dissociation and FA desorption, thereby facilitating the hydrogenation of FF to FA. Furthermore, the catalyst exhibited excellent recyclability and maintained high conversion efficiency and selectivity over multiple cycles.
采用氨蒸发水热法合成了具有不同镍/铜比(5∶15、10∶10、15∶5 wt%)的双金属铜镍层状硅酸盐(Cu-NiPS),以获得富铜或富镍的铜镍合金。在相对温和的条件(100℃,20 bar氢气)下,对这些催化剂进行了糠醛(FF)液相加氢制糠醇(FA)的评价。双金属Cu-NiPS催化剂表现出优异的Ni-Cu合金分散性,平均粒径在3.8至4.8 nm之间,并且与单金属镍层状硅酸盐(20% NiPS)相比,催化性能显著增强。富铜的Ni-Cu合金(15% Cu-5% NiPS)表现出最高的FF转化效率(88%)和FA选择性(90%)。这种优异的性能归因于其最小的粒径、较高的铜比例以及Ni和Cu之间的协同相互作用。这种协同作用有效地稳定了羰基,同时促进了高效的氢解离和FA解吸,从而促进了FF加氢生成FA。此外,该催化剂表现出优异的可回收性,在多个循环中保持了高转化效率和选择性。