Inherently chiral calixarenes by a catalytic enantioselective desymmetrizing cross-dehydrogenative coupling
文献情報
Xin Zhang, Shuo Tong, Jieping Zhu, Mei-Xiang Wang
Under the catalysis of PdBr2 and a chiral phosphoramidite ligand, the upper-rim mono (2-bromoaroyl)-substituted calix[4]arene derivatives underwent a facile enantioselective desymmetrization reaction to afford 9H-fluorene-embedded inherently chiral calixarenes in good yields with excellent enantioselectivities. The transannular dehydrogenative arene–arene coupling reaction proceeded most probably through an oxidative addition of the Caryl–Br bond to a ligated palladium catalyst followed by a sequence of an enantioselective 1,5-palladium migration and an intramolecular C–H arylation sequence. This new family of inherently chiral calixarenes possesses unique chiroptical properties thanks to their highly rigid structure induced by the 9H-fluorene segment.
関連文献
IF 6.367
Recent developments in carbon nitride based films for photoelectrochemical water splittingIF 6.367
High-performance tungsten carbide electrocatalysts for the hydrogen evolution reactionIF 6.367
Novel aqueous amine looping approach for the direct capture, conversion and storage of CO2 to produce magnesium carbonateIF 6.367
An elemental S/P photocatalyst for hydrogen evolution from water under visible to near-infrared light irradiationIF 6.222
Engineering nanoporous organic frameworks to stabilize naked Au clusters: a charge modulation approachIF 6.222
Nickel-containing N-doped carbon as effective electrocatalysts for the reduction of CO2 to CO in a continuous-flow electrolyzerIF 6.367
Sensitive and specific detection of tumour cells based on a multivalent DNA nanocreeper and a multiplexed fluorescence supersandwichIF 6.222
Metal–organic frameworks: preparation and applications in highly efficient heterogeneous photocatalysisIF 6.367
Electrospun hydrogels for dynamic culture systems: advantages, progress, and opportunitiesIF 6.843
掲載誌
Chemical Science

Our journal has a wide-ranging scope which covers the full breadth of the chemical sciences. The research we publish contains the sorts of novel ideas, challenging questions and progressive thinking that bring undiscovered breakthroughs within reach. Your paper could focus on a single area, or cross many. It could be beyond the accepted bounds of the chemical sciences. It might address an immediate challenge, contribute to a future breakthrough or be wholly conceptual. We’re a team from every field of the chemical sciences, and know from experience that breakthroughs that drive the solutions to global challenges can come from anywhere, at any time. You could even start an entirely new area of research. Too bold? Too progressive? No such thing