Fig. 3. Experimental and calculated ECD spectra of compound 21.Published as part of Cao, Yan-Gang, Ren, Ying-Jie, Liu, Yan-Ling, Wang, Meng-Na, He, Chen, Chen, Xu, Fan, Xi-Ling, Zhang, Yan-Li, Hao, Zhi-You, Li, Hong-Wei, Zheng, Xiao-Ke & Feng, Wei-Sheng, 2021, Iridoid glycosides and lignans from the fruits of Gardenia jasminoides Eills, pp. 1-8 in Phytochemistry (112893) 190 on page 6, DOI: 10.1016/j.phytochem.2021.112893, http://zenodo.org/record/825772
Fig. 3. Experimental ECD spectrum of 1 (black) compared with the calculated ECD spectra of 1 (red) a...
Fig. 5. Experimental ECD spectra of compounds 1–8 in MeOH.Published as part of Zhou, Peng, Zheng, Me...
Fig. 3. Chemical structures of iridoid glycosides (11-14, 21 and 24) isolated from the fruit of Cres...
Fig. 1. Compounds isolated from the fruits of G. jasminoides.Published as part of Cao, Yan-Gang, Ren...
Cao, Yan-Gang, Ren, Ying-Jie, Liu, Yan-Ling, Wang, Meng-Na, He, Chen, Chen, Xu, Fan, Xi-Ling, Zhang,...
Fig. 2. Key 2D NMR correlations for compounds 1, 3, 12, 17, 18, and 21.Published as part of Cao, Yan...
Iridoid glycosides are a group of naturally occurring chemical compounds. They are a large family of...
Fragmentation pathways of five iridoid glycosides have been studied by using electrospray ionization...
Fig. 4. Experimental and calculated ECD spectra of 1 7.Published as part of Li, Hongliang, Li, Jun, ...
The dichloromethane extract of the air-dried flowers of Gardenia jasminoides Ellis. afforded a new i...
Gardenia jasminoides, grown in multiple regions in China, was commonly used as a natural yellow dye ...
Fig. 6. Experimental and calculated ECD spectra of 3 (A) and experimental ECD curves of compounds 3 ...
Fig. 4. Experimental and calculated ECD spectra of 1 (A) and experimental ECD curves of compounds 1 ...
Fig. 4. Comparison of the experimental and calculated ECD spectra of 2, 4, 5, 7, 16, and 17.Publishe...
Fig. 5. ECD calculations for seneciojanine A-D (1–4).Published as part of Jumai, Aikebaier, Rouzimai...
Fig. 3. Experimental ECD spectrum of 1 (black) compared with the calculated ECD spectra of 1 (red) a...
Fig. 5. Experimental ECD spectra of compounds 1–8 in MeOH.Published as part of Zhou, Peng, Zheng, Me...
Fig. 3. Chemical structures of iridoid glycosides (11-14, 21 and 24) isolated from the fruit of Cres...
Fig. 1. Compounds isolated from the fruits of G. jasminoides.Published as part of Cao, Yan-Gang, Ren...
Cao, Yan-Gang, Ren, Ying-Jie, Liu, Yan-Ling, Wang, Meng-Na, He, Chen, Chen, Xu, Fan, Xi-Ling, Zhang,...
Fig. 2. Key 2D NMR correlations for compounds 1, 3, 12, 17, 18, and 21.Published as part of Cao, Yan...
Iridoid glycosides are a group of naturally occurring chemical compounds. They are a large family of...
Fragmentation pathways of five iridoid glycosides have been studied by using electrospray ionization...
Fig. 4. Experimental and calculated ECD spectra of 1 7.Published as part of Li, Hongliang, Li, Jun, ...
The dichloromethane extract of the air-dried flowers of Gardenia jasminoides Ellis. afforded a new i...
Gardenia jasminoides, grown in multiple regions in China, was commonly used as a natural yellow dye ...
Fig. 6. Experimental and calculated ECD spectra of 3 (A) and experimental ECD curves of compounds 3 ...
Fig. 4. Experimental and calculated ECD spectra of 1 (A) and experimental ECD curves of compounds 1 ...
Fig. 4. Comparison of the experimental and calculated ECD spectra of 2, 4, 5, 7, 16, and 17.Publishe...
Fig. 5. ECD calculations for seneciojanine A-D (1–4).Published as part of Jumai, Aikebaier, Rouzimai...
Fig. 3. Experimental ECD spectrum of 1 (black) compared with the calculated ECD spectra of 1 (red) a...
Fig. 5. Experimental ECD spectra of compounds 1–8 in MeOH.Published as part of Zhou, Peng, Zheng, Me...
Fig. 3. Chemical structures of iridoid glycosides (11-14, 21 and 24) isolated from the fruit of Cres...