Abstract:A chiral metal-organic cage (MOC) was extended and fixed into a porous framework using a post-assembly modification strategy, which made it easier to study the host-guest chemistry of the solidstate MOC using a single-crystal diffraction technique. Anionic Ti 4 L 6 (L = embonate) cage can be used as a 4connecting crystal engineering tecton, and its optical resolution was achieved, thus homochiral ΔΔΔΔ-and ΛΛΛΛ-[Ti 4 L 6 ] cages were obtained. Accordingly, a pair of homochiral cage-based microporous frameworks … Show more
“…TOCs are oen grown as single crystals for precise structure determination, which is essential for establishing structure-property relationships at the molecular level. [16][17][18] While numerous TOCs with varying nuclearities and structures [19][20][21][22][23][24][25][26] have been discovered, including highnuclearity Ti 42 27 and Ti 52 , 28 many suffer from sensitivity to moisture due to the presence of alkoxy groups (-OR) derived from solvents or Ti(OR) 4 around their TiO cores. These alkoxy groups typically exhibit monodentate or bridging modes and offer insufficient protection.…”
The controlled synthesis of titanium-oxo clusters (TOCs) completely stabilized by organic dye ligands with high stability and superior light absorption remains a significant challenge. In this study, we report the...
“…TOCs are oen grown as single crystals for precise structure determination, which is essential for establishing structure-property relationships at the molecular level. [16][17][18] While numerous TOCs with varying nuclearities and structures [19][20][21][22][23][24][25][26] have been discovered, including highnuclearity Ti 42 27 and Ti 52 , 28 many suffer from sensitivity to moisture due to the presence of alkoxy groups (-OR) derived from solvents or Ti(OR) 4 around their TiO cores. These alkoxy groups typically exhibit monodentate or bridging modes and offer insufficient protection.…”
The controlled synthesis of titanium-oxo clusters (TOCs) completely stabilized by organic dye ligands with high stability and superior light absorption remains a significant challenge. In this study, we report the...
The integration of anionic Ti4L6 (L = embonate) cages and π-conjugated coordination cations into ordered structures can produce high-performance nonlinear optical (NLO) materials. More specifically, by employing the Ti4L6 cages...
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