We describe a 395 GHz pulsed electron paramagnetic resonance (EPR) setup, and initial results of relaxation measurements and cw EPR at these frequencies in samples used for liquid- and solid-state nuclear magnetic resonance enhanced by dynamic nuclear polarization (DNP). Depending on the amount of spin - orbit coupling, the spin lattice relaxation becomes significantly faster at higher fields and frequencies, which has consequences for some DNP applications at high fields and frequencies. We will discuss the requirements for (sub)millimeter-wave sources and components for DNP and pulsed EPR at even higher frequencies and fields, as even higher magnetic fields will become available in the near future
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
Dynamic nuclear polarization transfers spin polarization from electrons to nuclei. We have achieved ...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 1999.Includes bibliographic...
Pulsed Electron Paramagnetic Resonance (EPR) is now a standard magnetic resonance characterisation t...
Solid-state dynamic nuclear polarization (DNP) at higher magnetic fields (>3T) and cryogenic temp...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2008.Includes bibliographi...
Dynamic nuclear polarization (DNP) takes center stage in nuclear magnetic resonance (NMR) as a tool ...
To understand the dynamic nuclear polarization (DNP) enhancements of biradical polarizing agents, th...
To understand the dynamic nuclear polarization (DNP) enhancements of biradical polarizing agents, th...
Dynamic nuclear polarization (DNP) has re-emerged as a method to increase NMR signal by orders of ma...
Dynamic nuclear polarization (DNP) effects in aqueous solutions of stable 4−hydroxy−2,2,6,6−tetramet...
Dynamic nuclear polarization (DNP) effects in aqueous solutions of stable 4-hydroxy-2,2,6,6-tetramet...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
Dynamic nuclear polarization transfers spin polarization from electrons to nuclei. We have achieved ...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 1999.Includes bibliographic...
Pulsed Electron Paramagnetic Resonance (EPR) is now a standard magnetic resonance characterisation t...
Solid-state dynamic nuclear polarization (DNP) at higher magnetic fields (>3T) and cryogenic temp...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2008.Includes bibliographi...
Dynamic nuclear polarization (DNP) takes center stage in nuclear magnetic resonance (NMR) as a tool ...
To understand the dynamic nuclear polarization (DNP) enhancements of biradical polarizing agents, th...
To understand the dynamic nuclear polarization (DNP) enhancements of biradical polarizing agents, th...
Dynamic nuclear polarization (DNP) has re-emerged as a method to increase NMR signal by orders of ma...
Dynamic nuclear polarization (DNP) effects in aqueous solutions of stable 4−hydroxy−2,2,6,6−tetramet...
Dynamic nuclear polarization (DNP) effects in aqueous solutions of stable 4-hydroxy-2,2,6,6-tetramet...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
International audienceWe have characterized the rigid binitroxide radical bis-TEMPO-bis-Ketal (bTbK)...
Dynamic nuclear polarization transfers spin polarization from electrons to nuclei. We have achieved ...