AI Article Synopsis

  • The study explores the self-assembly of heterotrimetallic molecular structures using a new tetratopic donor and specific metal acceptors, focusing on how these architectures can encapsulate guest molecules.
  • H NMR analysis demonstrated that molecular barrel 1 selectively interacts with a certain guest compound, while the self-assembly with different Ru(II)-based acceptors leads to distinct tetragonal-prismatic cages.
  • The resulting molecular architectures (barrel 1 and cages 3) were thoroughly characterized through a combination of spectroscopic techniques and single-crystal X-ray analysis, revealing their specific structural properties.

Article Abstract

Three-dimensional molecular architectures self-assembled with tripodal and tetratopic donors are valuable because of their encapsulation properties. Here, we present Co(I)-Fe(II)-Pd(II) heterotrimetallic trifacial barrel 1, which was self-assembled using a newly synthesized tetratopic donor [CpCo(CbR)] [L; Cp = cyclopentadienyl, Cb = cyclobudiene, and R = 4-(4-pyridylphenyl)] and a 90° acceptor [ cis-(dppf)Pd(OTf)] (A1; dppf = (diphenylphosphino)ferrocene and OTf = CFSO). The heterotrimetallic barrel 1 exhibited selective 1:1 interaction with a N, N'-dimethyl-1,4,5,8-naphthalenetetracarboxylic diimide guest, as revealed by H NMR analysis. The self-assembly of donor L with two other Ru(II)-based 180° acceptors [( p-cymene)Ru(OO∩OO)(OTf)] [OO∩OO = 6,11-dioxido-5,12-naphthacenedione (A2) and oxalate (A3)] resulted in tetragonal-prismatic cages. Self-assembly using the longer acceptor A2 provided rare isomers of a tetragonal-prismatic cage by varying the orientation of the cyclopentadienyl moiety out-out (2) or out-in (2) of the cavity, whereas self-assembly using the shorter acceptor A3 selectively resulted in the tetragonal-prismatic cage 3. The three-dimensional molecular architectures 1-3 were characterized by combined spectroscopic and elemental analyses. The structures of molecular barrel 1 and prismatic cage 3 were elucidated by single-crystal X-ray analysis.

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Source
http://dx.doi.org/10.1021/acs.inorgchem.7b02653DOI Listing

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