Intermolecular Nuclear Spin Hyperpolarization Transfer via Cross‐Relaxation Triggers RASER of Solute Molecules

I Ivan A. Trofimov (Division of Medical Physics Department of Diagnostic and Interventional Radiology University Medical Center Freiburg Faculty of Medicine University of Freiburg Freiburg Germany) A Anna P. Yi (International Tomography Center SB RAS Novosibirsk Russia) O Oleg G. Salnikov (International Tomography Center SB RAS Novosibirsk Russia) A Andrey N. Pravdivtsev H Henri de Maissin (Division of Medical Physics Department of Radiology Medical Center and Faculty of Medicine Freiburg Germany) E Eduard Y. Chekmenev (Department of Chemistry, Integrative Biosciences (Ibio)) J Jan‐Bernd Hövener (Sektion Biomedizinsche Bildgebung Molecular Imaging North Competence Center MOINCC Klinik Für Radiologie und Neuroradiologie University Hospital Schleswig‐Holstein Kiel University Kiel Germany) A Andreas B. Schmidt (Division of Medical Physics Department of Radiology Medical Center and Faculty of Medicine Freiburg Germany) I Igor V. Koptyug (International Tomography Center SB RAS Novosibirsk Russia)

Abstract

ABSTRACT Radiofrequency amplification by stimulated emission of radiation (RASER) is a phenomenon that is observed in systems of nuclear spins with strong inverse polarization beyond the thermal equilibrium. RASER is of fundamental interest and also possesses several features of possible practical importance, such as very narrow NMR lines and background‐free detection. However, so far, the effect was limited to molecules directly polarized by corresponding hyperpolarization techniques. In this work, we found that strongly hyperpolarized allylic compounds transferred polarization via nuclear Overhauser effect (NOE) to other solutes, triggering their RASER. In stark contrast to previous observations, the parahydrogen addition and intermolecular NOE transfer engendered RASER (PAINTER) does not require direct hyperpolarization of the target molecule. This way polarized and detected solutes had 10–20 times narrower lines compared to their classical NMR spectra, providing a useful analysis tool for various molecules beyond standard NMR limitations.

Article Details

Volume / Issue Vol. 65, Issue 19
Published May 04, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

I

Ivan A. Trofimov

Division of Medical Physics Department of Diagnostic and Interventional Radiology University Medical Center Freiburg Faculty of Medicine University of Freiburg Freiburg Germany

A

Anna P. Yi

International Tomography Center SB RAS Novosibirsk Russia

O

Oleg G. Salnikov

International Tomography Center SB RAS Novosibirsk Russia

A

Andrey N. Pravdivtsev

H

Henri de Maissin

Division of Medical Physics Department of Radiology Medical Center and Faculty of Medicine Freiburg Germany

E

Eduard Y. Chekmenev

Department of Chemistry, Integrative Biosciences (Ibio)

J

Jan‐Bernd Hövener

Sektion Biomedizinsche Bildgebung Molecular Imaging North Competence Center MOINCC Klinik Für Radiologie und Neuroradiologie University Hospital Schleswig‐Holstein Kiel University Kiel Germany

A

Andreas B. Schmidt

Division of Medical Physics Department of Radiology Medical Center and Faculty of Medicine Freiburg Germany

I

Igor V. Koptyug

International Tomography Center SB RAS Novosibirsk Russia