Calles María, Puigcerver Julio, Alonso Diego A, Alajarin Mateo, Martinez-Cuezva Alberto, Berna Jose
Departamento de Química Orgánica, Facultad de Química, Regional Campus of International Excellence "Campus Mare Nostrum", Universidad de Murcia E-30100 Murcia Spain
Departamento de Química Orgánica, Facultad de Ciencias, Universidad de Alicante E-03080 Alicante Spain.
Chem Sci. 2020 Mar 11;11(14):3629-3635. doi: 10.1039/d0sc00444h.
The synthesis of a pair of switchable interlocked prolinamides and their use as organocatalysts in three different enamine-activated processes are reported. A diacylaminopyridine moiety was incorporated into the thread for directing [2]rotaxane formation further allowing the association of complementary small molecules. The rotaxane-based systems were tested as organocatalysts in asymmetric enamine-mediated processes, revealing a significantly improved catalytic ability if compared with the non-interlocked thread. The presence of an electron-withdrawing nitro group at the macrocycle helps to achieve high conversions and enantioselectivities. These systems are able to interact with -hexylthymine as a cofactor to form supramolecular catalysts displaying a divergent catalytic behaviour. The presence or absence of the cofactor controls the chemoselectivity in competitive reactions.
报道了一对可切换的互锁脯氨酰胺的合成及其在三种不同的烯胺活化过程中作为有机催化剂的应用。将二酰氨基吡啶部分引入到线轴中以指导[2]轮烷的形成,进一步允许互补小分子的缔合。基于轮烷的体系在不对称烯胺介导的过程中作为有机催化剂进行了测试,结果表明与非互锁的线轴相比,其催化能力有显著提高。大环上吸电子硝基的存在有助于实现高转化率和对映选择性。这些体系能够与作为辅因子的己基胸腺嘧啶相互作用,形成具有不同催化行为的超分子催化剂。辅因子的存在与否控制着竞争反应中的化学选择性。