Rinshad Valiyakath Abdul, Aggarwal Medha, Clegg Jack K, Mukherjee Partha Sarathi
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560012, India.
School of Chemistry and Molecular Biosciences, The University of Queensland, St. Lucia, Queensland 4072, Australia.
JACS Au. 2024 Aug 15;4(8):3238-3247. doi: 10.1021/jacsau.4c00539. eCollection 2024 Aug 26.
Molecular hosts with functional cavities can emulate enzymatic behavior through selective encapsulation of substrates, resulting in high chemo-, regio-, and stereoselective product formation. It is still challenging to synthesize enzyme-mimicking hosts that exhibit a narrow substrate scope that relies upon the recognition of substrates based on the molecular size. Herein, we introduce a Pd self-assembled water-soluble molecular capsule [ ] () that was formed through the self-assembly of a ligand (4',4‴'-(1,4-phenylene)bis(1',4'-dihydro-[4,2':6',4″-terpyridine]-3',5'-dicarbonitrile)) with the acceptor -[(en)Pd(NO)] [en = ethane-1,2-diamine] (). The molecular capsule showed size-selective recognition towards xylene isomers. The redox property of was explored for efficient and selective oxidation of one of the alkyl groups of -xylene and -xylene to their corresponding toluic acids using molecular O as an oxidant upon photoirradiation. Employing host-guest chemistry, we demonstrate the homogeneous catalysis of alkyl aromatics to the corresponding monocarboxylic acids in water under mild conditions. Despite homogeneous catalysis, the products were separated from the reaction mixtures by simple filtration/extraction, and the catalyst was reused. The larger analogues of the alkyl aromatics failed to bind within the 's hydrophobic cavity, resulting in a lower/negligible reaction outcome. The present study represents a facile approach for selective photo-oxidation of xylene isomers to their corresponding toluic acids in an aqueous medium under mild conditions.
具有功能性空腔的分子主体可以通过对底物的选择性包封来模拟酶的行为,从而实现高化学、区域和立体选择性产物的形成。合成具有狭窄底物范围的模拟酶主体仍然具有挑战性,这种主体依赖于基于分子大小对底物的识别。在此,我们介绍一种钯自组装水溶性分子胶囊[ ](),它是由配体(4',4‴'-(1,4-亚苯基)双(1',4'-二氢-[4,2':6',4″-三联吡啶]-3',5'-二腈))与受体-[(乙二胺)钯(NO)] [乙二胺 = 乙烷-1,2-二胺]()自组装形成的。该分子胶囊对二甲苯异构体表现出尺寸选择性识别。利用分子氧作为氧化剂,在光照射下,探索了[ ]的氧化还原性质,以高效、选择性地将邻二甲苯和间二甲苯的一个烷基氧化为相应的甲苯酸。利用主客体化学,我们展示了在温和条件下,烷基芳烃在水中均相催化生成相应的单羧酸。尽管是均相催化,但产物通过简单的过滤/萃取即可从反应混合物中分离出来,并且催化剂可以重复使用。较大的烷基芳烃类似物无法在[ ]的疏水腔内结合,导致反应产率较低/可忽略不计。本研究代表了一种在温和条件下,在水性介质中将二甲苯异构体选择性光氧化为相应甲苯酸的简便方法。