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. Author manuscript; available in PMC: 2016 Jun 3.
Published in final edited form as: Tetrahedron Lett. 2015 Jun 3;56(23):3630–3632. doi: 10.1016/j.tetlet.2015.01.172

Table 1.

1H and 13C NMR data for compound 1.a

Posn δHb δcc
2 166.1 (C)
3 127.4 (C)
4 5.26 brs 66.7 (CH)
5 157.8 (C)
6 4.96 dd (2.8, 1.4) 91.5 (CH2)
4.72 dd (2.8, 1.4)
1′ 7.10 dt (7.8, 2.0) 150.3 (CH)
2′ 2.50 dt (14.6, 7.7) 29.8 (CH2)
2.43 dt (14.6, 7.7)
3′ 1.25–1.31 28.3 (CH2)
4′ 1.25–1.31 29.8–29.5 (CH2)
5′ 1.25–1.31 29.8–29.5 (CH2)
6′ 1.25–1.31 29.8–29.5 (CH2)
7′ 1.25–1.31 29.8–29.5 (CH2)
8′ 1.25–1.31 29.8–29.5 (CH2)
9′ 1.25–1.31 29.8–29.5 (CH2)
10′ 1.25–1.31 29.8–29.5 (CH2)
11’ 1.25–1.31 29.8–29.5 (CH2)
12′ 1.25–1.31 29.8–29.5 (CH2)
13′ 1.25–1.31 32.1 (CH2)
14′ 1.25–1.31 22.8 (CH2)
15′ 0.88 t (7.0) 14.3 (CH3)
a

Assignments based on analysis of 2D NMR spectra.

b

Data (δ) measured at 500 MHz; brs = broad singlet, dd= doublet of doublets, dt = doublet of triplets. J values are in Hz and are omitted if the signals overlapped as multiplets. The overlapped signals were assigned from HSQC and HMBC spectra without designating multiplicity.

c

Data (δ) measured at 125 MHz; CH3, CH2, CH, and C multiplicities were determined by HSQC experiment.