With optimal conditions, we treated different benzaldehydes with
2a to examine the functional-group tolerance (
Scheme 3). Difluoroalkylation of benzaldehyde derivatives with
ortho substituents proceeded smoothly to furnish the corresponding
para-difluoroalkylated products
3b-
3e. Pleasingly,
meta-substituted benzaldehyde derivatives provided the corresponding products
3f-
3i difluoroalkylated at the sterically hindered
para-position in moderate to good yield. This reactivity is different to that observed in previous
meta-selective alkylation and difluoroalkylation reactions [
8], in which
meta-substituted substrates are less reactive than their
ortho- or
para-substituted analogues. Notably, previous uninvestigated 2-naphthaldehyde only generated the
meta-difluoroalkylated product
3j. Heteroarenes, such as furan-2-carbaldehyde and thiophene-2-carbaldehyde, are also viable substrates, providing
3k and
3l in moderate yields. The current methodology can be easily extended to the coupling of BrCF
2CONMe
2 (
2b) and heteroaryl difluoromethyl bromide (
2d) with benzaldehyde, providing
3m and
3n in good yields. Although
1H and
19F NMR of
3n is in agreement with literature [
13], it was containment with aryl impurities and cannot be further purified. Unfortunately, cyclic amides, difluoromethyl halides (HCF
2X), difluoroalkyl halides, BrCF
2PO(OEt)
2 and BrCFHCO
2Et didnot react with aldehydes to provide desired products. Further extension of this protocol to aromatic ketones successfully furnished corresponding
para-difluoroalkylated products as well (
Scheme 3). The acetophenone derivatives performed well under the optimal conditions (
4a-
4d). Other alkyl aromatic ketones were compatible with the difluoroalkylation, providing the corresponding products
4e-
4g in moderate to good yields. The diphenyl ketones afforded monodifluoromethylation products
4h and
4i. 9-Fluorenone, the important intermediate for organic synthesis and materials science, also provided the mono-
para-difluoroalkylated product
4j. 1-Tetralone and chromanone reacted smoothly with bromodifluoroacetate to afford the corresponding
para-difluoroalkylated products
4k and
4l in 56% and 53% yields, respectively. Substrates of
4m provided single difluoroalkylated products with high selectivity at the
para-position of the benzoyl ring rather than the electronically rich aromatic ring. Directly introducing fluorine-containing functional groups into bioactive compounds is an effective method for new drug development. To our delight, the difluoroalkylated ketoprofen derivative (
4n) and octabenzone derivative (
4o) were successfully obtained by this transformation. Although
1H and
19F NMR of
4o is in agreement with literature [
9a], it was containment with aryl impurities and can not be further purified.