A preparative synthesis of an inwardly directed phosphoramidite-Au complex is described and a description of some of its catalytic performance. The molecular structure was determined by crystallographic analysis, which disclosed that the phosphoramidite ligand points "out" and places the complexed
A preparative synthesis of an inwardly oriented phosphoramidite-Au dinuclear resorcinarene cavitand complex is described, including a description of potent catalytic abilities. The cavitand structure was determined by crystallographic analysis, which revealed that the phosphoramidite P-N bonds point outside placing the two Au atoms inside. We explored the catalytic
The effect of a metallocatalytic cavity flanked by aromatic rings on the catalytic dimerization of terminal alkynes was explored through a comparison with model catalysts that weakened the cavity. The diquinoxaline‐spanned resorcin[4]arene provided a definite compartment, in which the two Au centers enticed two alkynes to undergo the coupling reaction. We synthesized two kinds of model compounds in which one lacked two quinoxaline walls and the other had two pyrazine walls and found that these catalysts exhibited much lower reactivity. The two quinoxaline moieties proved to be quintessential for the catalytic event.
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