Xu Dongfei, Ren Jiaan, Yue Shengnan, Zou Xiujing, Shang Xingfu, Wang Xueguang
State Key Laboratory of Advanced Special Steel, Shanghai Key Laboratory of Advanced Ferrometallurgy, School of Materials Science and Engineering, Shanghai University, Shanghai 200444, China.
Materials (Basel). 2021 Oct 10;14(20):5942. doi: 10.3390/ma14205942.
A series of Al-P-O catalysts (Al-P-O) were prepared using a P123-assisted one-pot method at different P/Al molar ratios and used for -methylation of catechol and methanol. The influences of the P/Al molar ratio and P123 addition on catalyst structure and surface acid-base characteristics were investigated in detail. Increasing the P/Al molar ratio more favored crystalline aluminophosphate. The P123-assisted Al and PO are known to be stabilized through weak steric force so that the formation of crystalline aluminophosphate could be inhibited at higher P/Al molar ratios. The results showed that the prepared Al-P-O catalysts possessed appropriate weak acid and weak base sites, which was beneficial to the reaction of catechol and methanol. The Al-1.1P-O catalyst synthesized with the assistance of P123 exhibited superior catalytic performances, with 52.5% catechol conversion and higher guaiacol selectivity of 97.6%.
采用P123辅助一锅法,在不同的P/Al摩尔比下制备了一系列Al-P-O催化剂,并将其用于邻苯二酚和甲醇的甲基化反应。详细研究了P/Al摩尔比和P123添加量对催化剂结构和表面酸碱特性的影响。增加P/Al摩尔比更有利于结晶磷酸铝的形成。已知P123辅助的Al和PO通过弱空间力得以稳定,因此在较高的P/Al摩尔比下,结晶磷酸铝的形成可能会受到抑制。结果表明,所制备的Al-P-O催化剂具有适当的弱酸和弱碱位点,这有利于邻苯二酚和甲醇的反应。在P123辅助下合成的Al-1.1P-O催化剂表现出优异的催化性能,邻苯二酚转化率为52.5%,愈创木酚选择性更高,为97.6%。