Ultraslow diffusion in polycrystalllne h-LITIS2 studied by 7Li spln-alignment echo NMR spectroscopy

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OriginalspracheEnglisch
Seiten (von - bis)1182-1187
Seitenumfang6
FachzeitschriftDefect and Diffusion Forum
Jahrgang237-240
AusgabenummerPART 2
PublikationsstatusVeröffentlicht - 2005

Abstract

Multiple-time spin-alignment echo (SAE) NMR spectroscopy of spin-3/2 nuclei is used to study ultraslow diffusion in the hexagonal layered Li ion conductor LixTiS2 (x ≈1). Two-time correlation functions were monitored by recording (Jeener-Broekaert) echo amplitudes for constant evolution and variable mixing times. Echo decay rates τSAE-1 being directly related to Li jump rates, take values ranging from 2s -1 to 570 s-1 between temperatures T = 185 K and 293 K. The temperature dependence of τSAE-1 shows Arrhenius behaviour with an activation energy of 0.26(1) eV, being similar to that obtained by spin-lattice relaxation measurements in the rotating as well as in the laboratory frame at higher temperatures.

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Ultraslow diffusion in polycrystalllne h-LITIS2 studied by 7Li spln-alignment echo NMR spectroscopy. / Wilkening, Martin; Heitjans, Paul.
in: Defect and Diffusion Forum, Jahrgang 237-240, Nr. PART 2, 2005, S. 1182-1187.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Wilkening M, Heitjans P. Ultraslow diffusion in polycrystalllne h-LITIS2 studied by 7Li spln-alignment echo NMR spectroscopy. Defect and Diffusion Forum. 2005;237-240(PART 2):1182-1187. doi: 10.4028/www.scientific.net/ddf.237-240.1182
Wilkening, Martin ; Heitjans, Paul. / Ultraslow diffusion in polycrystalllne h-LITIS2 studied by 7Li spln-alignment echo NMR spectroscopy. in: Defect and Diffusion Forum. 2005 ; Jahrgang 237-240, Nr. PART 2. S. 1182-1187.
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abstract = "Multiple-time spin-alignment echo (SAE) NMR spectroscopy of spin-3/2 nuclei is used to study ultraslow diffusion in the hexagonal layered Li ion conductor LixTiS2 (x ≈1). Two-time correlation functions were monitored by recording (Jeener-Broekaert) echo amplitudes for constant evolution and variable mixing times. Echo decay rates τSAE-1 being directly related to Li jump rates, take values ranging from 2s -1 to 570 s-1 between temperatures T = 185 K and 293 K. The temperature dependence of τSAE-1 shows Arrhenius behaviour with an activation energy of 0.26(1) eV, being similar to that obtained by spin-lattice relaxation measurements in the rotating as well as in the laboratory frame at higher temperatures.",
keywords = "Lithium titanlum disulfide, NMR relaxation, Solid state NMR, Spin-alignment, Ultraslow diffusion",
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T1 - Ultraslow diffusion in polycrystalllne h-LITIS2 studied by 7Li spln-alignment echo NMR spectroscopy

AU - Wilkening, Martin

AU - Heitjans, Paul

PY - 2005

Y1 - 2005

N2 - Multiple-time spin-alignment echo (SAE) NMR spectroscopy of spin-3/2 nuclei is used to study ultraslow diffusion in the hexagonal layered Li ion conductor LixTiS2 (x ≈1). Two-time correlation functions were monitored by recording (Jeener-Broekaert) echo amplitudes for constant evolution and variable mixing times. Echo decay rates τSAE-1 being directly related to Li jump rates, take values ranging from 2s -1 to 570 s-1 between temperatures T = 185 K and 293 K. The temperature dependence of τSAE-1 shows Arrhenius behaviour with an activation energy of 0.26(1) eV, being similar to that obtained by spin-lattice relaxation measurements in the rotating as well as in the laboratory frame at higher temperatures.

AB - Multiple-time spin-alignment echo (SAE) NMR spectroscopy of spin-3/2 nuclei is used to study ultraslow diffusion in the hexagonal layered Li ion conductor LixTiS2 (x ≈1). Two-time correlation functions were monitored by recording (Jeener-Broekaert) echo amplitudes for constant evolution and variable mixing times. Echo decay rates τSAE-1 being directly related to Li jump rates, take values ranging from 2s -1 to 570 s-1 between temperatures T = 185 K and 293 K. The temperature dependence of τSAE-1 shows Arrhenius behaviour with an activation energy of 0.26(1) eV, being similar to that obtained by spin-lattice relaxation measurements in the rotating as well as in the laboratory frame at higher temperatures.

KW - Lithium titanlum disulfide

KW - NMR relaxation

KW - Solid state NMR

KW - Spin-alignment

KW - Ultraslow diffusion

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