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669431 Aldrich

Lithium fluoride

Precipitated, 99.995%

Synonym: Fluorolithium

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Description

Packaging

50 g in poly bottle

Price and Availability


Ultra-high Purity Salts

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Safety & Documentation

Safety Information

Symbol 
GHS06  GHS06
Signal word 
Danger
Hazard statements 
Supplemental Hazard Statements 
Contact with acids liberates very toxic gas.
RIDADR 
UN 3288 6.1 / PGIII
WGK Germany 
2

Protocols & Articles

Articles

Complex Hydrides: A New Category of Solid-state Lithium Fast-ion Conductors

Research and development of solid-state lithium fast-ion conductors is crucial because they can be potentially used as solid electrolytes in all-solid-state batteries, which may solve the safety and ...
Motoaki Matsuo,1 Hiroyuki Oguchi,1,2 Hideki Maekawa,2 Hitoshi Takamura,2Shin-ichi Orimo,1*
Material Matters Volume 5 Article 4
Keywords: Calorimetry, Deposition, Diffraction, Diffusion, Melting, Nuclear magnetic resonance spectroscopy, Raman spectroscopy, Search, Spectra, Spectroscopy, Substitutions, Support, X-Ray diffraction, transformation

Determination of Water Content in Lithium fluoride Using Karl Fischer Titration

Adherent water in salts can be easily determined. It is best to choose a working medium which will prevent the salt from dissolving, e.g. a Methanol-Chloroform mixture with an excess of Chloroform. T...
Keywords: Crystallization, Evaporation, Titrations

Peer-Reviewed Papers

References

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Dosimetry of a cone-beam computed tomography machine compared with a digital x-ray machine in orthodontic imaging. Grünheid T, Kolbeck Schieck JR, Pliska BT, et al. Am. J. Orthod. Dentofacial Orthop. 141(4), 436-43, (2012)

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[Lithium fluoride: not only dosimetry, but also X ray imaging?]. Bonfigli F, Campurra G, Montereali RM, et al. G. Ital. Med. Lav. Ergon. 33(3 Suppl), 391-4, (2011)

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[Calibration of thermoluminescent dosimeters used for measuring the effective dose in computer tomography]. Zelikman MI and Kruchinin SA Med. Tekh. (5), 11-5, (2012)

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Electric field polarization in conventional density functional theory: from quasilinear to two-dimensional and three-dimensional extended systems. Kirtman B, Lacivita V, Dovesi R, et al. J. Chem. Phys. 135(15), 154101, (2011)

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The effect of the Perdew-Zunger self-interaction correction to density functionals on the energetics of small molecules. Klüpfel S, Klüpfel P, and Jónsson H J. Chem. Phys. 137(12), 124102, (2012)

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Response of LiF:Mg,Ti thermoluminescent dosimeters at photon energies relevant to the dosimetry of brachytherapy (<1 MeV). Tedgren AC, Hedman A, Grindborg JE, et al. Med. Phys. 38(10), 5539-50, (2011)

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Quantifying the breakdown of the Born-Oppenheimer approximation in surface chemistry. Rahinov I, Cooper R, Matsiev D, et al. Phys. Chem. Chem. Phys. 13(28), 12680-92, (2011)

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Comparative measurements of the external radiation exposure in a 137Cs contaminated village in Belarus based on optically stimulated luminescence in NaCl and thermoluminescence in LiF. Bernhardsson C, Matskevich S, Mattsson S, et al. Health Phys. 103(6), 740-9, (2012)

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Comparison of some dispersion-corrected and traditional functionals with CCSD(T) and MP2 ab initio methods: dispersion, induction, and basis set superposition error. Roy D, Marianski M, Maitra NT, et al. J. Chem. Phys. 137(13), 134109, (2012)

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Charge carrier accumulation in lithium fluoride thin films due to Li-ion absorption by titania (100) subsurface. Li C, Gu L, Guo X, et al. Nano Lett. 12(3), 1241-6, (2012)

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A computerized glow curve analysis (GCA) method for WinREMS thermoluminescent dosimeter data using MATLAB. Harvey JA, Rodrigues ML, and Kearfott KJ Appl. Radiat. Isot. 69(9), 1282-6, (2011)

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Synthesis of LiYF4:Yb, Er upconversion nanoparticles and its fluorescence properties. Zhang L, Wang Z, Lu Z, et al. J. Nanosci. Nanotechnol. 14(6), 4710-3, (2014)

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Interacting plasmon and phonon polaritons in aligned nano- and microwires. Myroshnychenko V, Stefanski A, Manjavacas A, et al. Opt. Express 20(10), 10879-87, (2012)

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Solution-processed LiF for work function tuning in electrode bilayers. Aytun T, Turak A, Baikie I, et al. Nano Lett. 12(1), 39-44, (2012)

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Local control theory using trajectory surface hopping and linear-response time-dependent density functional theory. Curchod BF, Penfold TJ, Rothlisberger U, et al. Chimia 67(4), 218-21, (2013)

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The use of enriched 6Li and 7Li Lif:Mg,Cu,P glass-rod thermoluminescent dosemeters for linear accelerator out-of-field radiation dose measurements. Takam R, Bezak E, Liu G, et al. Radiat. Prot. Dosimetry 150(1), 22-33, (2012)

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Gating of a water nanochannel driven by dipolar molecules. Meng XW, Wang Y, Zhao YJ, et al. J. Phys. Chem. B 115(16), 4768-73, (2011)

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Interaction between nuclear graphite and molten fluoride salts: a synchrotron radiation study of the substitution of graphitic hydrogen by fluoride ion. Yang X, Feng S, Zhou X, et al. J. Phys. Chem. A 116(3), 985-9, (2012)

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Deactivation effects of the lowest excited state of Ho3+ at 2.9 μm emission introduced by Pr3+ ions in LiLuF4 crystal. Zhang P, Hang Y, and Zhang L Optics Letters 37(24), 5241-3, (2012)

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Femtosecond crystallographic experiment in wide-bandgap LiF crystal. Dachraoui H, Oberer C, and Heinzmann U Opt. Express 19(3), 2797-804, (2011)

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Heating rate effect on thermoluminescence glow curves of LiF:Mg,Cu,P+PTFE phosphor. Cruz-Zaragoza E, González PR, Azorín J, et al. Appl. Radiat. Isot. 69(10), 1369-73, (2011)

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Effects of high ambient temperature on glow-peak fading properties of LiF:Mg,Ti thermoluminescent dosemeters. Harvey JA and Kearfott KJ Radiat. Prot. Dosimetry 149(2), 109-15, (2012)

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Impact of reading pre-irradiation background signal on the post-irradiation glow curves of thermoluminescence dosimeters. Abd El-Hafez AI and Maghraby A Appl. Radiat. Isot. 69(10), 1533-9, (2011)

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The applicability of the PTTL dose re-analysis method to the Harshaw LiF:Mg,Cu,P material. Moscovitch M, Benevides L, Romanyukha A, et al. Radiat. Prot. Dosimetry 144(1-4), 161-4, (2011)

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GdBr3: CE in a glass wafer as a nuclear radiation monitor. Kang Z, Rosson R, Barta MB, et al. Health Phys. 104(5), 504-10, (2013)

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Effects of heating rate and dose on trapping parameters of TLD-100 crystals. Caprile PF, Sánchez-Nieto B, Pino AM, et al. Health Phys. 104(2), 218-23, (2013)

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Merck 14,5531

Fieser 1,993 / Fieser 1,933 / Fieser 13,332

Corp MSDS 1 (1), 2155:C / RegBook 1 (3), 3303:A / Sax 6, 1711

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