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Coil design for large-volume high-/^ homogeneity for solid-state NMR applications. / Privalov, A. F.; Dvinskikh, S. V.; Vieth, H. M.

In: Journal of Magnetic Resonance - Series A, Vol. 123, No. 2, 01.01.1996, p. 157-160.

Research output: Contribution to journalArticlepeer-review

Harvard

Privalov, AF, Dvinskikh, SV & Vieth, HM 1996, 'Coil design for large-volume high-/^ homogeneity for solid-state NMR applications', Journal of Magnetic Resonance - Series A, vol. 123, no. 2, pp. 157-160. https://doi.org/10.1006/jmra.1996.0229

APA

Privalov, A. F., Dvinskikh, S. V., & Vieth, H. M. (1996). Coil design for large-volume high-/^ homogeneity for solid-state NMR applications. Journal of Magnetic Resonance - Series A, 123(2), 157-160. https://doi.org/10.1006/jmra.1996.0229

Vancouver

Privalov AF, Dvinskikh SV, Vieth HM. Coil design for large-volume high-/^ homogeneity for solid-state NMR applications. Journal of Magnetic Resonance - Series A. 1996 Jan 1;123(2):157-160. https://doi.org/10.1006/jmra.1996.0229

Author

Privalov, A. F. ; Dvinskikh, S. V. ; Vieth, H. M. / Coil design for large-volume high-/^ homogeneity for solid-state NMR applications. In: Journal of Magnetic Resonance - Series A. 1996 ; Vol. 123, No. 2. pp. 157-160.

BibTeX

@article{2824e8ef8dd64316b75fde339091f773,
title = "Coil design for large-volume high-/^ homogeneity for solid-state NMR applications",
abstract = "The design of a solenoidal NMR coil with high-B1 homogeneity for high-frequency solid-state NMR is described. The coil is made of thin ribbon of continuously variable width. The width is varied to minimize inhomogeneity in the axial direction. The field distribution throughout the entire volume of the sample was taken into account. The gap between turns is constant and kept small to minimize field inhomogeneity in the radial direction. For large samples in particular, coils of this design tested at 300 MHz show significantly better homogeneity than helical coils with constant pitch or coils with variable pitch but fixed ribbon width, o 1996 Academic Press, Inc.",
author = "Privalov, {A. F.} and Dvinskikh, {S. V.} and Vieth, {H. M.}",
year = "1996",
month = jan,
day = "1",
doi = "10.1006/jmra.1996.0229",
language = "English",
volume = "123",
pages = "157--160",
journal = "Journal of Magnetic Resonance - Series A",
issn = "1090-7807",
publisher = "Elsevier",
number = "2",

}

RIS

TY - JOUR

T1 - Coil design for large-volume high-/^ homogeneity for solid-state NMR applications

AU - Privalov, A. F.

AU - Dvinskikh, S. V.

AU - Vieth, H. M.

PY - 1996/1/1

Y1 - 1996/1/1

N2 - The design of a solenoidal NMR coil with high-B1 homogeneity for high-frequency solid-state NMR is described. The coil is made of thin ribbon of continuously variable width. The width is varied to minimize inhomogeneity in the axial direction. The field distribution throughout the entire volume of the sample was taken into account. The gap between turns is constant and kept small to minimize field inhomogeneity in the radial direction. For large samples in particular, coils of this design tested at 300 MHz show significantly better homogeneity than helical coils with constant pitch or coils with variable pitch but fixed ribbon width, o 1996 Academic Press, Inc.

AB - The design of a solenoidal NMR coil with high-B1 homogeneity for high-frequency solid-state NMR is described. The coil is made of thin ribbon of continuously variable width. The width is varied to minimize inhomogeneity in the axial direction. The field distribution throughout the entire volume of the sample was taken into account. The gap between turns is constant and kept small to minimize field inhomogeneity in the radial direction. For large samples in particular, coils of this design tested at 300 MHz show significantly better homogeneity than helical coils with constant pitch or coils with variable pitch but fixed ribbon width, o 1996 Academic Press, Inc.

UR - http://www.scopus.com/inward/record.url?scp=0000530551&partnerID=8YFLogxK

U2 - 10.1006/jmra.1996.0229

DO - 10.1006/jmra.1996.0229

M3 - Article

AN - SCOPUS:0000530551

VL - 123

SP - 157

EP - 160

JO - Journal of Magnetic Resonance - Series A

JF - Journal of Magnetic Resonance - Series A

SN - 1090-7807

IS - 2

ER -

ID: 48950320