PubMed Health⌕ Search

PubMed · 16448125

Characterizing challenging microcrystalline solids with solid-state NMR shift tensor and synchrotron X-ray powder diffraction data: structural analysis of ambuic acid.

Abstract

Synchrotron X-ray powder diffraction and solid-state (13)C NMR shift tensor data are combined to provide a unique path to structure in microcrystalline organic solids. Analysis is demonstrated on ambuic acid powder, a widely occurring natural product, to provide the complete crystal structure. The NMR data verify phase purity, specify one molecule per asymmetric unit, and provide an initial structural model including relative stereochemistry and molecular conformation. A refinement of X-ray data from the initial model establishes that ambuic acid crystallizes in the P2(1) space group with unit cell parameters a = 15.5047(7), b = 4.3904(2), and c = 14.1933(4) A and beta = 110.3134(3) degrees . This combined analysis yields structural improvements at two dihedral angles over prior NMR predictions with differences of 103 degrees and 37 degrees found. Only minor differences of +/-5.5 degrees , on average, are observed at all remaining dihedral angles. Predicted hydroxyl hydrogen-bonding orientations also fit NMR predictions within +/-6.9 degrees . This refinement corrects chemical shift assignments at two carbons and reduces the NMR error by approximately 16%. This work demonstrates that the combination of long-range order information from synchrotron powder diffraction data together with the accurate shorter range structure given by solid-state NMR measurements is a powerful tool for studying challenging organic solids.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

James K Harper, David M Grant, Yuegang Zhang, Peter L Lee, Robert Von Dreele. 2006-02-08. Characterizing challenging microcrystalline solids with solid-state NMR shift tensor and synchrotron X-ray powder diffraction data: structural analysis of ambuic acid.. https://doi.org/10.1021/ja055570j

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

[New drugs; nitisinone].

Nitisinone is an inhibitor of 4-hydroxyphenyl-pyruvate dioxygenase (4HPPD). Its rare area of use is hereditary tyrosinaemia, a life-threatening disease in which the last step in the catabolism of tyrosine cannot be taken due to the absence of an enzyme. The inhibition of 4HPPD, an enzyme that is active early in the catabolic cascade, prevents the accumulation of toxic metabolites of tyrosine.

Cyclohexanones↗

Bridelionosides A-F: Megastigmane glucosides from Bridelia glauca f. balansae.

The chemical investigation of leaves of Bridelia glauca f. balansae afforded six megastigmane glucosides, named bridelionosides A-F, along with seven known megastigmane glucosides. Their structures were determined by a combination of spectroscopic analyses and by application of the modified Mosher's method.

Cyclohexanones↗

Solid-state linear-dichroic IR-spectroscopy of isophorone derivatives with potential non-linear optical application.

Possibilities of linear-dichroic infrared (IR-LD) spectroscopy based on oriented solid samples as suspension in nematic liquid crystal have been applied for detailed experimental IR-band assignment and structural information of 2-[5,5-dimethyl-3-(2-phenyl-vinil)-cyclohex-2-enylidene]-malononitrile, 2-[5,5-dimethyl-3-[2-(2-methoxyphenyl)vinyl]cyclo-hex-2-enylidene]malononitrile and 2-[3-[2-(2,4-dimethoxyphenyl)vinyl]-5,5-dimethylcyclohex-2-enylidene]malononitrile. The data of last two compounds have been compared with known crystallographic ones, thus determining the validity of conclusions made.

Cyclohexanones↗