Bera Saibal, Dey Kaushik, Pal Tapan K, Halder Arjun, Tothadi Srinu, Karak Suvendu, Addicoat Matthew, Banerjee Rahul
Academy of Scientific and Innovative Research (AcSIR), CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune-, 411008, India.
Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER) Kolkata, Mohanpur Campus, Mohanpur, 741246, India.
Angew Chem Int Ed Engl. 2019 Mar 22;58(13):4243-4247. doi: 10.1002/anie.201813773. Epub 2019 Feb 25.
Porous solids that can be switched between different forms with distinct physical properties are appealing candidates for separation, catalysis, and host-guest chemistry. In this regard, porous organic cages (POCs) are of profound interest because of their solution-state accessibility. However, the application of POCs is limited by poor chemical stability. Synthesis of an exceptionally stable imine-linked (4+6) porous organic cage (TpOMe-CDA) is reported using 2,4,6-trimethoxy-1,3,5-triformyl benzene (TpOMe) as a precursor aldehyde. Introduction of the -OMe functional group to the aldehyde creates significant steric and hydrophobic characteristics in the environment around the imine bonds that protects the cage molecules from hydrolysis in the presence of acids or bases. The electronic effect of the -OMe group also plays an important role in enhancing the stability of the reported POCs. As a consequence, TpOMe-CDA reveals exceptional chemical stability in neutral, acidic and basic conditions, even in 12 m NaOH. Interestingly, TpOMe-CDA exists in three different porous and non-porous polymorphic forms (α, β, and γ) with respect to differences in crystallographic packing and the orientation of the flexible methoxy groups. All of the polymorphs retain their crystallinity even after treatment with acids and bases. All the polymorphs of TpOMe-CDA differ significantly in their properties as well as morphology and could be reversibly switched in the presence of an external stimulus.
能够在具有不同物理性质的不同形式之间切换的多孔固体,是分离、催化和主客体化学领域颇具吸引力的候选材料。在这方面,多孔有机笼(POC)因其在溶液状态下易于获取而备受关注。然而,POC的应用受到化学稳定性差的限制。本文报道了以2,4,6-三甲氧基-1,3,5-三甲醛苯(TpOMe)作为前体醛,合成一种异常稳定的亚胺连接的(4+6)多孔有机笼(TpOMe-CDA)。将-OMe官能团引入醛中,在亚胺键周围的环境中产生了显著的空间和疏水特性,可保护笼状分子在酸碱存在下不发生水解。-OMe基团的电子效应在增强所报道的POC的稳定性方面也起着重要作用。因此,TpOMe-CDA在中性、酸性和碱性条件下,甚至在12 m NaOH中都表现出异常的化学稳定性。有趣的是,由于晶体堆积和柔性甲氧基取向的差异,TpOMe-CDA以三种不同的多孔和无孔多晶型形式(α、β和γ)存在。即使经过酸碱处理,所有多晶型物仍保持其结晶性。TpOMe-CDA的所有多晶型物在性质、形态上都有显著差异,并且在外部刺激下可以可逆地切换。