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双(硅烯)吡啶钴(III)配合物催化的C(sp)-H键活化:位阻C-H键的催化氢同位素交换

C(sp)-H Activation with Bis(silylene)pyridine Cobalt(III) Complexes: Catalytic Hydrogen Isotope Exchange of Sterically-Hindered C-H Bonds.

作者信息

Roque Jose B, Pabst Tyler P, Chirik Paul J

机构信息

Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.

出版信息

ACS Catal. 2022 Aug 5;12(15):8877-8885. doi: 10.1021/acscatal.2c02429. Epub 2022 Jul 11.

Abstract

The bis(silylene)pyridine cobalt(III) dihydride boryl, -[ SiNSi]Co(H)BPin (SiNSi = 2,6-[EtNSi(NBu)CAr] CHN, where Ar = CHCH, and Pin =pinacolato) has been used as a precatalyst for the hydrogen isotope exchange (HIE) of arenes and heteroarenes using benzene- as the deuterium source. Use of D as the source of the isotope produced modest levels of deuterium incorporation and stoichiometric studies established modification of the pincer ligand through irreversible addition of H across the silylene leading to catalyst deactivation. High levels of deuterium incorporation were observed with benzene- as the isotope source and enabled low (0.5 - 5 mol%) loadings of the cobalt precursor. The resulting high activity for C-H activation enabled deuterium incorporation at sterically encumbered sites previously inaccessible with first-row metal HIE catalysts. The cobalt-catalyzed method was also compatible with aryl halides, demonstrating a kinetic preference for chemoselective C(sp)-H activation over C(sp)-X (X = Cl, Br) bonds. Monitoring the catalytic reaction by NMR spectroscopy established cobalt(III) resting states at both low and high conversions of substrate and the overall performance was inhibited by the addition of HBPin. Studies on precatalyst activation with -[ SiNSi]Co(Bf)H and -[ SiNSi]Co(H)Bf (where Bf = 2-benzofuranyl), support the intermediacy of bis(hydride)aryl cobalt intermediates as opposed to bis(aryl)hydride cobalt complexes in the catalytic HIE method. Mechanistic insights resulted in an improved protocol using [ SiNSi]Co(H) NaBHEt as the precatalyst, ultimately translating onto higher levels of isotopic incorporation.

摘要

双(硅烯)吡啶钴(III)二氢硼基化合物,-[SiNSi]Co(H)BPin(SiNSi = 2,6-[EtNSi(NBu)CAr]₂CHN,其中Ar = CH₂CH₂,Pin = 频哪醇硼酸酯)已被用作芳烃和杂芳烃氢同位素交换(HIE)的预催化剂,以苯-d₆作为氘源。使用D作为同位素源时,氘的掺入水平适中,化学计量研究表明,通过硅烯上不可逆地加成H对钳形配体进行了修饰,导致催化剂失活。以苯-d₆作为同位素源时,观察到了高水平的氘掺入,并使得钴前体的负载量低至(0.5 - 5 mol%)。由此产生的C-H活化高活性使得能够在先前第一排金属HIE催化剂无法到达的空间位阻位点掺入氘。钴催化方法也与芳基卤化物兼容,表明在化学选择性C(sp²)-H活化方面相对于C(sp²)-X(X = Cl、Br)键具有动力学偏好。通过NMR光谱监测催化反应,确定了底物低转化率和高转化率时钴(III)的静止状态,并且加入HBPin会抑制整体性能。对-[SiNSi]Co(Bf)H和-[SiNSi]Co(H)Bf(其中Bf = 2-苯并呋喃基)预催化剂活化的研究支持了在催化HIE方法中双氢芳基钴中间体而非双芳基氢化钴配合物的中间体地位。机理研究结果导致了一种改进的方案,使用[SiNSi]Co(H)NaBHEt作为预催化剂,最终转化为更高水平的同位素掺入。

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