Xin Tiansi, Cummins Christopher C
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.
ACS Cent Sci. 2023 Jul 21;9(8):1575-1580. doi: 10.1021/acscentsci.3c00725. eCollection 2023 Aug 23.
In pursuit of a more sustainable route to phosphorus-carbon (P-C) bond-containing chemicals, we herein report that phosphonates can be prepared by mechanochemical phosphorylation of acetylides using polyphosphates in a single step, redox-neutral process, bypassing white phosphorus (P) and other high-energy, environmentally hazardous intermediates. Using sodium triphosphate (NaPO) and acetylides, alkynyl phosphonates can be isolated in yields of up to 32%, while reaction of sodium pyrophosphate (NaPO) and sodium carbide (NaC) engendered, in an optimized yield of 63%, ethynyl phosphonate , an easily isolable compound that can be readily converted to useful organophosphorus chemicals. Highly condensed phosphates like Graham's salt and bioproduced polyphosphate were also found to be compatible after reducing the chain length by grinding with orthophosphate. These results demonstrate the possibility of accessing organophosphorus chemicals directly from condensed phosphates and may offer an opportunity to move toward a "greener" phosphorus industry.
为了寻求一条更可持续的合成含磷 - 碳(P - C)键化合物的路线,我们在此报告,膦酸盐可以通过使用多磷酸盐对乙炔化物进行机械化学磷酸化反应,在一个单步、氧化还原中性的过程中制备,绕过了白磷(P)和其他高能、对环境有害的中间体。使用三聚磷酸钠(Na₅P₃O₁₀)和乙炔化物,可以分离得到炔基膦酸盐,产率高达32%,而焦磷酸钠(Na₂H₂P₂O₇)与碳化钠(Na₂C₂)反应,在优化产率为63%的情况下生成乙炔基膦酸盐,这是一种易于分离的化合物,可很容易地转化为有用的有机磷化学品。像格雷厄姆盐和生物产生的多磷酸盐这样的高度缩合磷酸盐,在用正磷酸盐研磨以缩短链长后,也被发现是适用的。这些结果证明了直接从缩合磷酸盐获得有机磷化学品的可能性,并可能为迈向“更绿色”的磷化工行业提供一个机会。