Sumida Ryuki, Catti Lorenzo, Yoshizawa Michito
Laboratory for Chemistry and Life Science, Institute of Innovative Research, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8503, Japan.
ACS Org Inorg Au. 2024 May 16;4(4):410-417. doi: 10.1021/acsorginorgau.4c00013. eCollection 2024 Aug 7.
Linear monoterpenes, versatile reaction biosubstrates, are bound and subsequently converted to various cyclic monomers and oligomers with excellent selectivity and efficiency, in natural enzymes. We herein report bioinspired functions of synthetic polyaromatic cavities toward linear monoterpenes in the solution and solid states. The cavities are provided by polyaromatic coordination capsules, formed by the assembly of Pt(II) ions and bent bispyridine ligands with two anthracene panels. By using the capsule cavities, the selective binding of citronellal from mixtures with other monoterpenes and its preferential vapor binding over its derivatives are demonstrated in water and in the solid state, respectively. The capsule furthermore extracts -menthane-3,8-diol, with high product- and stereoselectivity, from a reaction mixture obtained by the acid-catalyzed cyclization of citronellal in water. Thanks to the inner and outer polyaromatic cavities, the catalytic cyclization-dimerization of vaporized citronellal efficiently proceeds in the acid-loaded capsule solid and product/stereoselectively affords -menthane-3,8-diol citronellal acetal (∼330% yield based on the capsule) under ambient conditions. The solid capsule reactor can be reused at least 5 times with enhanced conversion. The present study opens up a new approach toward mimicking terpene biosynthesis via synthetic polyaromatic cavities.
线性单萜类化合物是用途广泛的反应生物底物,在天然酶中,它们会被结合,随后以优异的选择性和效率转化为各种环状单体和低聚物。我们在此报告了合成多芳香族空腔在溶液和固态下对线性单萜类化合物的仿生功能。这些空腔由多芳香族配位胶囊提供,该胶囊由Pt(II)离子和带有两个蒽面板的弯曲双吡啶配体组装而成。通过使用胶囊空腔,分别在水相和固态中证明了香茅醛能从与其他单萜类化合物的混合物中选择性结合,并且相对于其衍生物,它更倾向于蒸汽结合。该胶囊还能从香茅醛在水中酸催化环化反应得到的反应混合物中,以高产物选择性和立体选择性提取3,8-薄荷二醇。得益于内部和外部的多芳香族空腔,在负载酸的胶囊固体中,汽化香茅醛的催化环化二聚反应能高效进行,并且在环境条件下产物/立体选择性地生成3,8-薄荷二醇香茅醛缩醛(基于胶囊的产率约为330%)。这种固体胶囊反应器可以重复使用至少5次,且转化率有所提高。本研究为通过合成多芳香族空腔模拟萜类生物合成开辟了一条新途径。