Moniruzzaman Moniruzzaman, Jheng Nai-Yuan, Waterman Rory
Department of Chemistry, University of Vermont, Burlington, VT, 05405, USA.
Chemistry. 2025 Jun 26;31(36):e202500223. doi: 10.1002/chem.202500223. Epub 2025 Apr 29.
Hydrophosphination using calcium compounds as catalysts under irradiation is described as a foray into s-block photocatalysis. Transition-metal compounds have been highly successful hydrophosphination catalysts under photochemical conditions, utilizing substrates previously considered inaccessible. A calcium hydrophosphination precatalyst, Ca(nacnac) (THF) (N(SiMe)) (1, nacnac = HC[(C(Me)N-2,6-PrCH)]), reported by Barrett and Hill, as well as the presumed intermediate, Ca(nacnac) (THF) (PPh) (2), and the Schlenk equilibrium product, CaN(SiMe) (3) were screened under photochemical conditions with a range of unsaturated substrates including styrenic alkenes, Michael acceptors, and dienes with modest to excellent conversions, though unactivated alkenes were inaccessible. All compounds exhibit enhanced catalysis under irradiation by light emitting diode (LED)-generated blue light. Nacnac-supported compounds generate radicals as evidenced by Electron Paramagnetic Resonance (EPR) spectroscopy and radical trapping reactions, whereas unsupported calcium compounds are EPR silent and appear to undergo hydrophosphination akin to thermal reactions with these compounds. These results buttress the notion that photoactivation of π-basic ligands is a broad phenomenon, extending beyond the d-block, but like d-block metals, consideration of ancillary ligands is essential to avoid radical reactivity.
使用钙化合物作为催化剂在辐照下进行氢膦化反应被描述为对s区光催化的一次探索。过渡金属化合物在光化学条件下一直是非常成功的氢膦化催化剂,能够利用以前被认为难以反应的底物。Barrett和Hill报道的一种钙氢膦化预催化剂Ca(nacnac)(THF)(N(SiMe))(1,nacnac = HC[(C(Me)N-2,6-PrCH)]),以及推测的中间体Ca(nacnac)(THF)(PPh)(2)和Schlenk平衡产物CaN(SiMe)(3),在光化学条件下用一系列不饱和底物进行了筛选,包括苯乙烯类烯烃、迈克尔受体和二烯烃,转化率从中等到优异,不过未活化的烯烃难以反应。所有化合物在发光二极管(LED)产生的蓝光辐照下均表现出增强的催化作用。电子顺磁共振(EPR)光谱和自由基捕获反应证明,nacnac配体支持的化合物会产生自由基,而无配体的钙化合物的EPR信号为零,似乎与这些化合物发生类似于热反应的氢膦化反应。这些结果支持了这样一种观点,即π碱性配体的光活化是一种广泛存在的现象,超出了d区,但与d区金属一样,考虑辅助配体对于避免自由基反应至关重要。