TY - JOUR
T1 - LR-HSQMBC versus LR-selHSQMBC
T2 - Enhancing the Observation of Tiny Long-Range Heteronuclear NMR Correlations
AU - Motiram-Corral, Kumar
AU - Nolis, Pau
AU - Sauri, Josep
AU - Parea, Teodor
PY - 2020/4/24
Y1 - 2020/4/24
N2 - The detection of ultra-long-range ((4)J(CH) and higher) heteronuclear connectivities can complement the conventional use of HMBC/HSQMBC data in structure elucidation NMR studies of proton-deficient natural products, where two-bond and three-bond correlations are usually observed. The performance of the selHSQMBC experiment with respect to its broadband HSQMBC counterpart is evaluated. Despite its frequency-selectivity nature, selHSQMBC efficiently prevents any unwanted signal phase and intensity modulations due to passive proton-proton coupling constants typically involved in HSQMBC. As a result, selHSQMBC offers a significant sensitivity enhancement and provides pure in-phase multiplets, improving the detection levels for short- and long-range cross-peaks corresponding to small heteronuclear coupling values. This is particularly relevant for experiments optimized to small (n)J(CH) values (2-3 Hz), referred to as LR-selHSQMBC, where key cross-peaks that are not visible in the equivalent broadband LR-HSQMBC spectrum can become observable in optimum conditions.
AB - The detection of ultra-long-range ((4)J(CH) and higher) heteronuclear connectivities can complement the conventional use of HMBC/HSQMBC data in structure elucidation NMR studies of proton-deficient natural products, where two-bond and three-bond correlations are usually observed. The performance of the selHSQMBC experiment with respect to its broadband HSQMBC counterpart is evaluated. Despite its frequency-selectivity nature, selHSQMBC efficiently prevents any unwanted signal phase and intensity modulations due to passive proton-proton coupling constants typically involved in HSQMBC. As a result, selHSQMBC offers a significant sensitivity enhancement and provides pure in-phase multiplets, improving the detection levels for short- and long-range cross-peaks corresponding to small heteronuclear coupling values. This is particularly relevant for experiments optimized to small (n)J(CH) values (2-3 Hz), referred to as LR-selHSQMBC, where key cross-peaks that are not visible in the equivalent broadband LR-HSQMBC spectrum can become observable in optimum conditions.
KW - Coupling-constants
KW - Structure elucidation
KW - Accurate measurement
KW - Tool
UR - https://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=pure_univeritat_ramon_llull&SrcAuth=WosAPI&KeyUT=WOS:000529168400049&DestLinkType=FullRecord&DestApp=WOS_CPL
U2 - 10.1021/acs.jnatprod.0c00058
DO - 10.1021/acs.jnatprod.0c00058
M3 - Article
C2 - 32155071
SN - 0163-3864
VL - 83
SP - 1275
EP - 1282
JO - Journal of Natural Products
JF - Journal of Natural Products
IS - 4
ER -