In dynamic nuclear polarization (DNP), radicals such as trityl provide a source for high nuclear spin polarization. Conversely, during the low-field transfer of hyperpolarized solids, the radicals’ dipolar or Non-Zeeman reservoir may act as a powerful nuclear polarization sink. Here, we report the low-temperature proton spin relaxation in pyruvic acid doped with trityl, for fields from 5 mT to 2 T. We estimate the heat capacity of the radical Non-Zeeman reservoir experimentally and show that a recent formalism by Wenckebach yields a parameter-free, yet quantitative model for the entire field range
High-field magic angle spinning dynamic nuclear polarization (MAS DNP) is often used to enhance the ...
High-field magic angle spinning dynamic nuclear polarization (MAS DNP) is often used to enhance the ...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...
In dynamic nuclear polarization (DNP), radicals such as trityl provide a source for high nuclear spi...
Radicals serve as a source of polarization in dynamic nuclear polarization, but may also act as pola...
Radicals serve as a source of polarization in dynamic nuclear polarization, but may also act as pola...
Radicals serve as a source of polarization in dynamic nuclear polarization, but may also act as pola...
Radicals serve as source in dynamic nuclear polarization, but may also act as polarization sink. If ...
The temperature dependence of 1H and 13C nuclear spin–lattice relaxation rate 1/T1 has been studied ...
The temperature dependence of 1H and 13C nuclear spin–lattice relaxation rate 1/T1 has been studied ...
The available theoretical approaches aiming at describing Dynamic Nuclear spin Polarization (DNP) in...
The available theoretical approaches aiming at describing Dynamic Nuclear spin Polarization (DNP) in...
We detail the process of low-field thermal mixing (LFTM) between 1H and 13C nuclei in neat [1-13C] p...
We detail the process of low-field thermal mixing (LFTM) between 1H and 13C nuclei in neat [1-13C] p...
We detail the process of low-field thermal mixing (LFTM) between 1H and 13C nuclei in neat [1-13C] p...
High-field magic angle spinning dynamic nuclear polarization (MAS DNP) is often used to enhance the ...
High-field magic angle spinning dynamic nuclear polarization (MAS DNP) is often used to enhance the ...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...
In dynamic nuclear polarization (DNP), radicals such as trityl provide a source for high nuclear spi...
Radicals serve as a source of polarization in dynamic nuclear polarization, but may also act as pola...
Radicals serve as a source of polarization in dynamic nuclear polarization, but may also act as pola...
Radicals serve as a source of polarization in dynamic nuclear polarization, but may also act as pola...
Radicals serve as source in dynamic nuclear polarization, but may also act as polarization sink. If ...
The temperature dependence of 1H and 13C nuclear spin–lattice relaxation rate 1/T1 has been studied ...
The temperature dependence of 1H and 13C nuclear spin–lattice relaxation rate 1/T1 has been studied ...
The available theoretical approaches aiming at describing Dynamic Nuclear spin Polarization (DNP) in...
The available theoretical approaches aiming at describing Dynamic Nuclear spin Polarization (DNP) in...
We detail the process of low-field thermal mixing (LFTM) between 1H and 13C nuclei in neat [1-13C] p...
We detail the process of low-field thermal mixing (LFTM) between 1H and 13C nuclei in neat [1-13C] p...
We detail the process of low-field thermal mixing (LFTM) between 1H and 13C nuclei in neat [1-13C] p...
High-field magic angle spinning dynamic nuclear polarization (MAS DNP) is often used to enhance the ...
High-field magic angle spinning dynamic nuclear polarization (MAS DNP) is often used to enhance the ...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...