Solid-state arsenic NMR references
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Alexandra Faucher, Victor V. Terskikh, and Roderick E. Wasylishen
Assessing distortion of the AF-6 (A=As, Sb) octahedra in solid hexafluorometallates(V) via NMR spectroscopy,
Can. J. Chem. 93, 938-944 (2015).
Abstract -
Alexandra Faucher, Victor V. Terskikh, and Roderick E. Wasylishen
Feasibility of arsenic and antimony NMR spectroscopy in solids: An investigation of some group 15 compounds,
Solid State Nucl. Magn. Reson. 61, 54-61 (2014).
Abstract -
J. A. Lehmann-Horn, D. G. Miljak, and T. J. Bastow
75As, 63Cu NMR and NQR characterization of selected arsenic minerals,
Solid State Nucl. Magn. Reson. 54, 8-12 (2013).
Abstract -
Dennis L. A. G. Grimminck, Ben J. W. Polman, Arno P. M. Kentgens, and W. Leo Meerts
EASY-GOING deconvolution: Combining accurate simulation and evolutionary algorithms for fast deconvolution of solid-state quadrupolar NMR spectra,
J. Magn. Reson. 211, 114-120 (2011).
Abstract -
Paulus J. Knijn, P. Jan M. van Bentum, Ernst R. H. van Eck,
Changming Fang, Dennis L. A. G. Grimminck, Robert A. de Groot,
Remco W. A. Havenith, Martijn Marsman, W. Leo Meerts, Gilles A. de Wijs
and Arno P. M. Kentgens
A solid-state NMR and DFT study of compositional modulations in AlxGa1-xAs,
Phys. Chem. Chem. Phys. 12, 11517-11535 (2010).
Abstract -
A. P. M. Kentgens, J. Bart, P. J. M. van Bentum, A. Brinkmann,
E. R. H. van Eck, J. G. E. Gardeniers, J. W. G. Janssen,
P. Knijn, S. Vasa, and M. H. W. Verkuijlen
High-resolution liquid- and solid-state nuclear magnetic resonance of nanoliter sample volumes using microcoil detectors,
J Chem. Phys. 128, 052202/1-052202/17 (2008).
Abstract -
G. M. Bowers and R. J. Kirkpatrick
High-field 75As NMR study of arsenic oxysalts,
J. Magn. Reson. 188, 311-321 (2007). -
A. Egorov, I. R. Mukhamedshin, and H. Suzuki
NMR powder spectra in case of strong quadrupole interaction,
Physica B 329-333, 1397-1398 (2003). -
P. C. Taylor, T. Su, P. Hari, E. Ahn, A. Kleinhammes, P. L. Kuhns,
W. G. Moulton, and N. S. Sullivan
Structural and photostructural properties of chalcogenide glasses: recent results from magnetic resonance measurements,
J. Non-Cryst. Solids 326-327, 193-198 (2003). -
P. Hari, S. Guzel, T. Su, P. C. Taylor, P. L. Kuhns, W. G. Moulton,
and N. S. Sullivan
Photodarkening effect in glassy As2S3 and As2O3,
J. Non-Cryst. Solids 326-327, 199-204 (2003). -
R. W. Schurko, S. Wi, and L. Frydman
Dynamic effects on the powder line shapes of half-integer quadrupolar nuclei: a solid-state NMR study of XO4- groups,
J. Phys. Chem. A 106, 51-62 (2002). -
R. Blinc and T. Apih
NMR in multidimensionally modulated incommensurate and CDW systems,
Prog. Nucl. Magn. Reson. Spectrosc. 41, 49-82 (2002). -
T. J. Bastow
Arsenic-75 NMR: Knight shifts in arsenic metal,
J. Phys.: Condens. Matter 11, 569-574 (1999). -
P. C. Taylor, P. Hari, A. Kleinhammes, P. L. Kuhns, and W. G. Moulton
Asymmetries in local bonding sites in amorphous semiconductors: very high field NMR of 75As,
J. Non-Cryst. Solids 227-230, 770-774 (1998). -
J. Takeuchi, H. Nakamura, H. Yamada, E. Kita, A. Tasaki, and T. Erata
Quadrupolar nutation NMR on a compound semiconductor gallium-arsenide,
Solid State Nucl. Magn. Reson. 8, 123-128 (1997). -
L. D. Potter and Y. Wu
NMR measurements of homonuclear indirect couplings in GaAs,
J. Magn. Reson. A 116, 107-112 (1995). -
L. D. Potter, A. A. Guzelian, A. P. Alivisatos, and Y. Wu
Structure of chemically synthesized nanophase GaAs studied by NMR and x-ray diffraction,
J. Chem. Phys. 103, 4834-4840 (1995). -
David C. Newitt and Erwin L. Hahn
Detection of two-quantum nuclear coherence by nuclear-quadrupole-induced electric polarization,
J. Magn. Reson. A 106, 140-143 (1994). -
M. Suemitsu and N. Nakajo
Charged point defects in GaAs crystals evaluated by NMR spin echo,
J. Appl. Phys. 66, 3178-3186 (1989).
Related bibliography
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D. L. Sastry, A. Naito, and C. A. McDowell
75As quadrupolar effects in the CP MAS 13C NMR spectra of cacodylic acid and its sodium salt,
Chem. Phys. Lett. 146, 422-427 (1988).
More solid-state As-75 NMR references.
Solid-state NMR bibliography for
- Aluminum-27 (鋁)
- Antimony-121/123 (銻)
- Arsenic-75 (砷)
- Barium-135/137 (鋇)
- Beryllium-9 (鈹)
- Bismuth-209 (鉍)
- Boron-10/11 (硼)
- Bromine-79/81 (溴)
- Calcium-43 (鈣)
- Cesium-133 (銫)
- Chlorine-35/37 (氯)
- Chromium-53 (鉻)
- Cobalt-59 (鈷)
- Copper-63/65 (銅)
- Deuterium-2 (氘)
- Gallium-69/71 (鎵)
- Germanium-73 (鍺)
- Gold-197 (金)
- Hafnium-177/179 (鉿)
- Indium-113-115 (銦)
- Iodine-127 (碘)
- Iridium-191/193 (銥)
- Krypton-83 (氪)
- Lanthanum-139 (鑭)
- Lithium-6/7 (鋰)
- Magnesium-25 (鎂)
- Manganese-55 (錳)
- Mercury-201 (銾)
- Molybdenum-95/97 (鉬)
- Neon-21 (氖)
- Nickel-61 (鎳)
- Niobium-93 (鈮)
- Nitrogen-14 (氮)
- Osmium-189 (鋨)
- Oxygen-17 (氧)
- Palladium-105 (鈀)
- Potassium-39/41 (鉀)
- Rhenium-185/187 (錸)
- Rubidium-85/87 (銣)
- Ruthenium-99/101 (釕)
- Scandium-45 (鈧)
- Sodium-23 (鈉)
- Strontium-87 (鍶)
- Sulfur-33 (硫)
- Tantalum-181 (鉭)
- Titanium-47/49 (鈦)
- Vanadium-51 (釩)
- Xenon-131 (氥)
- Zinc-67 (鋅)
- Zirconium-91 (鋯)