Enantioselective synthesis and selective functionalization of 4‐aminotetrahydroquinolines as novel GLP‐1 secretagogues

Figure S1 NMRs of compound 5b

Figure S2 NMRs of compound 5d

Figure S3 NMRs of compound 5e

Figure S4 NMRs of compound 5f

Figure S5 NMRs of compound 5 g

Figure S6 NMRs of compound 5 h

Figure S7 NMRs of compound 5i

Figure S8 NMRs of compound 6a

Figure S9 NMRs of compound 6b

Figure S10 NMRs of compound 6c

Figure S11 NMRs of compound 6d

Figure S12 NMRs of compound 6e

Figure S13 NMRs of compound 6f

Figure S14 NMRs of compound 6 g

Figure S15 NMRs of compound 6 h

Figure S16 NMRs of compound 8a

Figure S17 NMRs of compound 8b

Figure S18 NMRs of compound 8c

Figure S19 NMRs of compound 8d

Figure S20 NMRs of compound 8e

Figure S21 NMRs of compound 8f

Figure S22 NMRs of compound 8 g

Figure S23 NMRs of compound 8 h

Figure S24 NMRs of compound 8i

Figure S25 NMRs of compound 8j

Figure S26 NMRs of compound 8 k

Figure S27 NMRs of compound 8 L

Figure S28 NMRs of compound 8 m

Figure S29 NMRs of compound 8n

Figure S30 NMRs of compound 8o

Figure S31 NMRs of compound 8p

Figure S32 NMRs of compound 8r

Figure S33 NMRs of compound 9

Figure S34 NMRs of compound 8q

Figure S35 SFC of compound 5a

Figure S36 SFC of compound 5b

Figure S37 SFC of compound 5c

Figure S38 SFC of compound 5d

Figure S39 SFC of compound 5e

Figure S40 SFC of compound 5f

Figure S41 HPLC of compound 5 g

Figure S42 HPLC of compound 5 h

Figure S43 HPLC of compound 5i

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