CIDNP公司
拉莫尔进动
超极化(物理学)
磁强计
核磁共振
光谱学
磁化
放松(心理学)
核磁共振波谱
旋转
磁场
化学
自由感应衰变
极化(电化学)
材料科学
分析化学(期刊)
自旋回波
物理
凝聚态物理
磁共振成像
放射科
物理化学
社会心理学
医学
量子力学
色谱法
心理学
作者
Liubov Chuchkova,Sven Bodenstedt,Román Picazo‐Frutos,James Eills,Oleg Tretiak,Yinan Hu,Danila A. Barskiy,Jacopo de Santis,Michael C. D. Tayler,Dmitry Budker,Kirill F. Sheberstov
标识
DOI:10.1021/acs.jpclett.3c01310
摘要
Photochemically induced dynamic nuclear polarization (photo-CIDNP) enables nuclear spin ordering by irradiating samples with light. Polarized spins are conventionally detected via high-field chemical-shift-resolved NMR (above 0.1 T). In this Letter, we demonstrate in situ low-field photo-CIDNP measurements using a magnetically shielded fast-field-cycling NMR setup detecting Larmor precession via atomic magnetometers. For solutions comprising mM concentrations of the photochemically polarized molecules, hyperpolarized 1H magnetization is detected by pulse-acquired NMR spectroscopy. The observed NMR line widths are about 5 times narrower than normally anticipated in high-field NMR and are systematically affected by light irradiation during the acquisition period, reflecting a reduction of the transverse relaxation time constant, T2*, on the order of 10%. Magnetometer-detected photo-CIDNP spectroscopy enables straightforward observation of spin-chemistry processes in the ambient field range from a few nT to tens of mT. Potential applications of this measuring modality are discussed.
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