Parvulescu Viorica, Petcu Gabriela, Apostol Nicoleta G, Atkinson Irina, Petrescu Simona, Baran Adriana, Culita Daniela C, Ene Ramona, Trica Bogdan, Anghel Elena M
Institute of Physical Chemistry-Ilie Murgulescu of the Romanian Academy, 202 Splaiul Independentei, 060021 Bucharest, Romania.
National Institute of Materials Physics, Atomistilor 405A, 077125 Magurele, Romania.
Nanomaterials (Basel). 2024 Dec 16;14(24):2025. doi: 10.3390/nano14242025.
Bimetallic (Ta/Ti, V, Co, Nb) mesoporous MCM-41 nanoparticles were obtained by direct synthesis and hydrothermal treatment. The obtained mesoporous materials were characterized by XRD, XRF, N adsorption/desorption, SEM, TEM, XPS, Raman, UV-Vis, and PL spectroscopy. A more significant effect was observed on the mesoporous structure, typically for MCM-41, and on optic properties if the second metal (Ti, Co) did not belong to the same Vb group with Ta as V and Nb. The XPS showed for the TaTi-MCM-41 sample that framework titanium is the major component. The new nanoparticles obtained were used as catalysts for oxidation with hydrogen peroxide of olefinic compounds (1,4 cyclohexadiene, cyclohexene, styrene) and photodegradation of organic pollutants (phenol, methyl orange) from water. The results showed improvementsin activity and selectivity in oxidation reactions by the addition of the second metal to the Ta-MCM-41 catalyst. The slow addition of HO was also beneficial for the selectivity of epoxide products and the stability of the catalysts. The band gap energy values decreased in the presence of the second metal, and the band edge diagram evidenced positive potential for all the conduction bands of the bimetallic samples. The highestlevels of photocatalytic degradation were obtained for the samples with TaTi and TaV.
通过直接合成和水热处理获得了双金属(Ta/Ti、V、Co、Nb)介孔MCM-41纳米颗粒。通过XRD、XRF、N吸附/脱附、SEM、TEM、XPS、拉曼光谱、紫外可见光谱和PL光谱对所得介孔材料进行了表征。如果第二种金属(Ti、Co)与Ta不属于与V和Nb相同的Vb族,则对介孔结构(通常对于MCM-41)和光学性质观察到更显著的影响。XPS显示对于TaTi-MCM-41样品,骨架钛是主要成分。所获得的新型纳米颗粒用作烯烃化合物(1,4-环己二烯、环己烯、苯乙烯)用过氧化氢氧化的催化剂以及水中有机污染物(苯酚、甲基橙)的光降解催化剂。结果表明,向Ta-MCM-41催化剂中添加第二种金属可提高氧化反应的活性和选择性。缓慢添加过氧化氢也有利于环氧化物产物的选择性和催化剂的稳定性。在第二种金属存在下,带隙能量值降低,能带边缘图表明双金属样品的所有导带具有正电位。对于TaTi和TaV样品,获得了最高水平的光催化降解。