Towards higher resolution for quadrupolar nuclei in solid state NMR at very high field. Massiot, D., Montouillout, V., Magnenet, C., Bessada, C., Coutures, J. P., Forster, H., Steuernagel, S., & Mueller, D. Comptes Rendus de l'Académie des Sciences - Series IIC - Chemistry, 1(3):157–162, March, 1998. Publisher: Elsevier Masson
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The recent availability of very high field (800 MHz) and very high magic angle spinning rates (35.5 kHz) can lead to important improvements in the field of solid state NMR of half integer quadrupolar nuclei showing important or severe second-order quadrupolar broadenings (27Al, 71Ga...). We give experimental examples of these improvements in the case of both crystalline, defect-bearing and amorphous materials. © Académie des Sciences/Elsevier, Paris.
@article{massiot_towards_1998,
	title = {Towards higher resolution for quadrupolar nuclei in solid state {NMR} at very high field},
	volume = {1},
	issn = {1387-1609},
	doi = {10.1016/S1387-1609(99)80074-7},
	abstract = {The recent availability of very high field (800 MHz) and very high magic angle spinning rates (35.5 kHz) can lead to important improvements in the field of solid state NMR of half integer quadrupolar nuclei showing important or severe second-order quadrupolar broadenings (27Al, 71Ga...). We give experimental examples of these improvements in the case of both crystalline, defect-bearing and amorphous materials. © Académie des Sciences/Elsevier, Paris.},
	number = {3},
	urldate = {2022-03-17},
	journal = {Comptes Rendus de l'Académie des Sciences - Series IIC - Chemistry},
	author = {Massiot, Dominique and Montouillout, Valérie and Magnenet, Claire and Bessada, Catherine and Coutures, Jean Pierre and Forster, Hans and Steuernagel, Stefan and Mueller, Detlef},
	month = mar,
	year = {1998},
	note = {Publisher: Elsevier Masson},
	keywords = {Aluminum, Gallium, MAS, Resolution, Solid state NMR},
	pages = {157--162},
}

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