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DNP enhanced NMR using a high-power 94 GHz microwave source: a study of the TEMPOL radical in toluene

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DNP enhanced NMR using a high-power 94 GHz microwave source: a study of the TEMPOL radical in toluene. / Kryukov, Eugeny V.; Newton, Mark E.; Pike, Kevin J. et al.
In: Physical Chemistry Chemical Physics, Vol. 12, No. 22, 14.06.2010, p. 5757-5765.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Kryukov, EV, Newton, ME, Pike, KJ, Bolton, DR, Kowalczyk, RM, Howes, AP, Smith, ME & Dupree, R 2010, 'DNP enhanced NMR using a high-power 94 GHz microwave source: a study of the TEMPOL radical in toluene', Physical Chemistry Chemical Physics, vol. 12, no. 22, pp. 5757-5765. https://doi.org/10.1039/C003189E

APA

Kryukov, E. V., Newton, M. E., Pike, K. J., Bolton, D. R., Kowalczyk, R. M., Howes, A. P., Smith, M. E., & Dupree, R. (2010). DNP enhanced NMR using a high-power 94 GHz microwave source: a study of the TEMPOL radical in toluene. Physical Chemistry Chemical Physics, 12(22), 5757-5765. https://doi.org/10.1039/C003189E

Vancouver

Kryukov EV, Newton ME, Pike KJ, Bolton DR, Kowalczyk RM, Howes AP et al. DNP enhanced NMR using a high-power 94 GHz microwave source: a study of the TEMPOL radical in toluene. Physical Chemistry Chemical Physics. 2010 Jun 14;12(22):5757-5765. doi: 10.1039/C003189E

Author

Kryukov, Eugeny V. ; Newton, Mark E. ; Pike, Kevin J. et al. / DNP enhanced NMR using a high-power 94 GHz microwave source : a study of the TEMPOL radical in toluene. In: Physical Chemistry Chemical Physics. 2010 ; Vol. 12, No. 22. pp. 5757-5765.

Bibtex

@article{d275722da70242299a5aab06b632053e,
title = "DNP enhanced NMR using a high-power 94 GHz microwave source: a study of the TEMPOL radical in toluene",
abstract = "DNP enhanced 1H NMR at 143 MHz in toluene is investigated using an NMR spectrometer coupled with a modified EPR spectrometer operating at 94 GHz and TEMPOL as the polarisation agent. A 100 W microwave amplifier was incorporated into the output stage of the EPR instrument so that high microwave powers could be delivered to the probe in either CW or pulsed mode. The maximum enhancement for the ring protons increases from −16 for a 5 mM TEMPOL solution to −50 for a 20 mM solution at a microwave power of 480 mW. The temperature dependence of the enhancement, the NMR relaxation rates and the ESR spectrum of TEMPOL were also studied in an effort to obtain information on the dynamics of the system.",
author = "Kryukov, {Eugeny V.} and Newton, {Mark E.} and Pike, {Kevin J.} and Bolton, {David R.} and Kowalczyk, {Radoslaw M.} and Howes, {Andrew P.} and Smith, {Mark E.} and Ray Dupree",
year = "2010",
month = jun,
day = "14",
doi = "10.1039/C003189E",
language = "English",
volume = "12",
pages = "5757--5765",
journal = "Physical Chemistry Chemical Physics",
issn = "1463-9076",
publisher = "Royal Society of Chemistry",
number = "22",

}

RIS

TY - JOUR

T1 - DNP enhanced NMR using a high-power 94 GHz microwave source

T2 - a study of the TEMPOL radical in toluene

AU - Kryukov, Eugeny V.

AU - Newton, Mark E.

AU - Pike, Kevin J.

AU - Bolton, David R.

AU - Kowalczyk, Radoslaw M.

AU - Howes, Andrew P.

AU - Smith, Mark E.

AU - Dupree, Ray

PY - 2010/6/14

Y1 - 2010/6/14

N2 - DNP enhanced 1H NMR at 143 MHz in toluene is investigated using an NMR spectrometer coupled with a modified EPR spectrometer operating at 94 GHz and TEMPOL as the polarisation agent. A 100 W microwave amplifier was incorporated into the output stage of the EPR instrument so that high microwave powers could be delivered to the probe in either CW or pulsed mode. The maximum enhancement for the ring protons increases from −16 for a 5 mM TEMPOL solution to −50 for a 20 mM solution at a microwave power of 480 mW. The temperature dependence of the enhancement, the NMR relaxation rates and the ESR spectrum of TEMPOL were also studied in an effort to obtain information on the dynamics of the system.

AB - DNP enhanced 1H NMR at 143 MHz in toluene is investigated using an NMR spectrometer coupled with a modified EPR spectrometer operating at 94 GHz and TEMPOL as the polarisation agent. A 100 W microwave amplifier was incorporated into the output stage of the EPR instrument so that high microwave powers could be delivered to the probe in either CW or pulsed mode. The maximum enhancement for the ring protons increases from −16 for a 5 mM TEMPOL solution to −50 for a 20 mM solution at a microwave power of 480 mW. The temperature dependence of the enhancement, the NMR relaxation rates and the ESR spectrum of TEMPOL were also studied in an effort to obtain information on the dynamics of the system.

U2 - 10.1039/C003189E

DO - 10.1039/C003189E

M3 - Journal article

VL - 12

SP - 5757

EP - 5765

JO - Physical Chemistry Chemical Physics

JF - Physical Chemistry Chemical Physics

SN - 1463-9076

IS - 22

ER -