Kumar Ashish, Krishnaswamy Shobhana, Chand Dillip Kumar
IoE Center of Molecular Architecture, Department of Chemistry, Indian Institute of Technology Madras, Chennai, 600036, India.
Angew Chem Int Ed Engl. 2025 Jan 27;64(5):e202416332. doi: 10.1002/anie.202416332. Epub 2024 Nov 14.
Complexation of Pd(II) with a designer unsymmetrical bis-monodentate ligand (2 : 4 ratio) yielded a specific PdL type "single-cavity discrete coordination cage" (SCDCC), from a pool of 4 isomeric structures. The observed selctivity is attributed to inherent orientational preference of the ligand strands around the metal centers. Crafting a short coordinating arm at either ends of the bis-monodentate ligand (i.e the longer-arm) produced a pair of unsymmetrical isomeric tris-monodentate ligands; whereas crafting the same short-arm at both ends of the ligand gives an unsymmetrical tetrakis-monodentate ligand. Complexation of Pd(II) with either of the isomeric tris-monodenate ligands (3 : 4 ratio) resulted in corresponding low-symmetry "multi-cavity discrete coordination cage" MCDCC having two conjoined cavities, though the inherent relative orientational preference of the longer arms is not achievable in these cages. The enforced orientation is sustained by "Neighbouring Cage Participation" (NCP). However, one-pot combination of Pd(II), with a mixture of isomeric tris-monodentate ligands in 3 : 2 : 2 ratio produced an integratively self-sorted mixed-ligated MCDCC from a pool of 31 structures. Also, mixing Pd(II) with the tetrakis-monodentate ligand produced a MCDCC having three conjoined cavities. The inherent orientational preference of longer-arm of the ligand strands is retained in the mixed-ligated double-cavity and the homo-ligated triple cavity cages.
钯(II)与一种设计的不对称双单齿配体(2∶4比例)络合,从4种异构体结构中产生了一种特定的PdL型“单腔离散配位笼”(SCDCC)。观察到的选择性归因于配体链在金属中心周围固有的取向偏好。在双单齿配体的两端(即较长臂)构建一个短配位臂,产生了一对不对称的异构体三单齿配体;而在配体的两端构建相同的短臂,则得到一个不对称的四单齿配体。钯(II)与任何一种异构体三单齿配体(3∶4比例)络合,都会产生相应的低对称性“多腔离散配位笼”(MCDCC),其具有两个相连的腔,尽管在这些笼子中无法实现较长臂固有的相对取向偏好。强制取向通过“相邻笼参与”(NCP)得以维持。然而,钯(II)与3∶2∶2比例的异构体三单齿配体混合物进行一锅组合,从31种结构中产生了一种整合自分类的混合配体MCDCC。此外,将钯(II)与四单齿配体混合产生了一种具有三个相连腔的MCDCC。配体链较长臂的固有取向偏好在混合配体双腔和同配体三腔笼中得以保留。