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Coordination-driven self-assembly of 3-(5-(pyridin-3-yl)-1H-1,2,4-triazol-3-yl)pyridine (L) was investigated with 90°cis-blocked Pd(II) acceptors and tetratopic Pd(NO3)2. Although the ligand is capable of binding in several different conformations (acting as a ditopic donor through the pyridyl nitrogens), the experimental results (including X-ray structures) showed that it adopts a particular conformation when it binds with 90°cis-blocked Pd(II) acceptors (two available sites) to yield [2 + 2] self-assembled macrocycles. On the other hand, with Pd(NO3)2 (where four available sites are present) a different conformer of the same donor was selectively bound to form a molecular cubic cage. The experimental findings were corroborated well with the density functional theory (B3LYP) calculations. The tetratopic Pd(NO3)2 yielded a [6 + 12] self-assembled Pd6L12 molecular cube, which contains a potential void occupied by nitrate and perchlorate ions. Being a triazole based ligand, the free space inside the cage is enriched with several sp(2) hybridised nitrogen atoms with lone pairs of electrons to act as Lewis basic sites. Knoevenagel condensation reactions of several aromatic aldehydes with active methylene compounds were successfully performed in reasonably high yields in the presence of the cage.
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http://dx.doi.org/10.1039/c5dt03185k | DOI Listing |
J Am Chem Soc
August 2025
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore560012, India.
The properties of supramolecules can be modulated by post-assembly modification (PAM) of their building blocks or via guest encapsulation. This work demonstrates a largely uncharted approach to property modulation that integrates both PAM and guest encapsulation in a single system to boost photocatalytic activity. Self-assembly of a "phenothiazine"-functionalized ligand () with a -blocked Pd(II) acceptor () generated an trifacial tube ().
View Article and Find Full Text PDFSmall
August 2025
School of Chemical Sciences, National Institute of Science Education and Research (NISER) Bhubaneswar, An OCC of Homi Bhabha National Institute (HBNI), PO Bhimpur- Padanpur, Via Jatni, Khordha, Odisha, 752050, India.
The excessive release of iodine from industrial and medical activities has led to severe contamination of air and water, causing major concern to public health. Effective capture and secure storage of radioactive iodine in both vapor and aqueous phases are crucial for nuclear safety and ecological protection. In this study, it is explore four non-porous metal-organic coordination cages (MC1-MC4) comprising of Pd-acceptors and diverse aromatic ligands for iodine adsorption across different media.
View Article and Find Full Text PDFJACS Au
May 2025
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560012, India.
The employment of flexible ligands with significant conformational freedom in coordination-driven self-assembly enables the formation of unique and intricate structures. In this study, the self-assembly of such a fluorenone-appended ligand () with a sterically demanding acceptor, [Pd-(tmed)-(ONO)] (), generated a new and unique molecular basket architecture, () () (), featuring a large hollow cavity. possesses an unusual twisted architecture of low symmetry, consisting of 16 Pd-(II) centers arranged as four tetrahedra connected by eight flexible ligands, representing a structurally complex system reminiscent of biological architectures.
View Article and Find Full Text PDFInorg Chem
June 2025
Department of Inorganic Chemistry, Faculty of Science, Charles University, Hlavova 2030, Prague 128 00, Czech Republic.
Differences in the chemical properties of phosphorus and antimony enable the synthesis of heteroditopic derivatives whose properties can be modified by altering the pnictogen substituents. In this work, 1-(diphenylstibino)-2-(dicyclohexylphosphino)ferrocene, [Fe(η-1-PhSb-2-CyPCH)(η-CH)] (), and the corresponding phosphine chalcogenides [Fe(η-1-PhSb-2-CyP(E)CH)(η-CH)] (E = O, S, Se) and catecholatostiboranes [Fe(η-1-Ph(ClCO)Sb-2-CyP(E)CH)(η-CH)] (E = void, O, S, Se) were examined, with a focus on the intramolecular donor-acceptor interactions between the antimony and the phosphorus substituents. Experimental data and theoretical analysis consistently indicated that these interactions can be described as pnictogen bonding between the Lewis acidic antimony and the lone pair at the phosphorus substituent (either at the phosphorus or at the chalcogen atom) and that they are significantly stronger in the stiboranes due to the increased Lewis acidity of the Sb atom.
View Article and Find Full Text PDFInorg Chem
March 2025
School of Chemical Sciences, National Institute of Science Education and Research (NISER), An OCC of Homi Bhabha National Institute (HBNI), Khurda 752050, Odisha, India.
We report the solvato-controlled synthesis of novel PdL-based bowl-shaped cages, specifically tetrafacial ( = 4) and trifacial ( = 3), constructed using -blocked 90° Pd(II) acceptors and a planar tetratopic ligand. The reaction of the ligand with (tmeda)Pd(ONO) in water produced a trifacial cage (), which quickly converted into a tetrafacial cage () in dimethyl sulfoxide (DMSO). Alternatively, the self-assembly of the ligand with (en)Pd(ONO) in water yielded an equilibrium mixture of tetrafacial () and trifacial () cages that exhibited reversible structural transformations in response to solvent changes.
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