Zero- to ultralow-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measurement of nuclear spin-spin interactions free from the effects of large magnetic fields, such as truncation of terms that do not commute with the Zeeman Hamiltonian. One such interaction, the magnetic dipole-dipole coupling, is a valuable source of spatial information in NMR, though many terms are unobservable in high-field NMR, and the coupling averages to zero under isotropic molecular tumbling. Under partial alignment, this information is retained in the form of so-called residual dipolar couplings. We report zero- to ultralow-field NMR measurements of residual dipolar couplings in acetonitrile-2-C13 aligned in stretched polyvinyl acetate gel...
Residual dipolar couplings for pairs of proximate magnetic nuclei in macromolecules can easily be me...
In the course of the last century, Nuclear magnetic resonance (NMR) has become a powerful and ubiqui...
In the course of the last century, Nuclear magnetic resonance (NMR) has become a powerful and ubiqui...
Zero- to ultralow-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measurem...
Zero- to ultralow-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measurem...
Zero- to ultra-low-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measure...
Zero- to ultra-low-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measure...
Nuclear magnetic resonance (NMR) is among the most powerful analytical tools available to the chemic...
As a complementary analysis tool to conventional high-field nuclear magnetic resonance (NMR), zero- ...
Nuclear Magnetic Resonance (NMR) is ubiquitous as a tool for investigating the structure of both mol...
Nuclear Magnetic Resonance (NMR) is ubiquitous as a tool for investigating the structure of both mol...
Zero- and ultralow-field (ZULF) nuclear magnetic resonance (NMR) is an emerging tool for precision c...
Nuclear magnetic resonance, conventionally detected in magnetic fields of several tesla, is a powerf...
Nuclear Magnetic Resonance (NMR) spectroscopy is an indispensable technique used in structure determ...
Residual dipolar couplings for pairs of proximate magnetic nuclei in macromolecules can easily be me...
Residual dipolar couplings for pairs of proximate magnetic nuclei in macromolecules can easily be me...
In the course of the last century, Nuclear magnetic resonance (NMR) has become a powerful and ubiqui...
In the course of the last century, Nuclear magnetic resonance (NMR) has become a powerful and ubiqui...
Zero- to ultralow-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measurem...
Zero- to ultralow-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measurem...
Zero- to ultra-low-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measure...
Zero- to ultra-low-field nuclear magnetic resonance (ZULF NMR) provides a new regime for the measure...
Nuclear magnetic resonance (NMR) is among the most powerful analytical tools available to the chemic...
As a complementary analysis tool to conventional high-field nuclear magnetic resonance (NMR), zero- ...
Nuclear Magnetic Resonance (NMR) is ubiquitous as a tool for investigating the structure of both mol...
Nuclear Magnetic Resonance (NMR) is ubiquitous as a tool for investigating the structure of both mol...
Zero- and ultralow-field (ZULF) nuclear magnetic resonance (NMR) is an emerging tool for precision c...
Nuclear magnetic resonance, conventionally detected in magnetic fields of several tesla, is a powerf...
Nuclear Magnetic Resonance (NMR) spectroscopy is an indispensable technique used in structure determ...
Residual dipolar couplings for pairs of proximate magnetic nuclei in macromolecules can easily be me...
Residual dipolar couplings for pairs of proximate magnetic nuclei in macromolecules can easily be me...
In the course of the last century, Nuclear magnetic resonance (NMR) has become a powerful and ubiqui...
In the course of the last century, Nuclear magnetic resonance (NMR) has become a powerful and ubiqui...