GF21606386
Erbium
rod, 50mm, diameter 10.0mm, cast, 99%
Synonym(s):
Erbium, ER007920
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About This Item
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Assay
99%
form
rod
manufacturer/tradename
Goodfellow 216-063-86
resistivity
86 μΩ-cm, 20°C
L × diam.
50 mm × 10.0 mm
bp
2868 °C (lit.)
mp
1529 °C (lit.)
density
9.062 g/mL at 25 °C (lit.)
SMILES string
[Er]
InChI
1S/Er
InChI key
UYAHIZSMUZPPFV-UHFFFAOYSA-N
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General description
For updated SDS information please visit www.goodfellow.com.
Legal Information
Product of Goodfellow
Storage Class Code
13 - Non Combustible Solids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Certificates of Analysis (COA)
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Dental clinics of North America, 48(4), 1017-1059 (2004-10-07)
Erbium hard tissue lasers have the capability to prepare enamel, dentin, caries, cementum, and bone in addition to cutting soft tissue. The ability of hard tissue lasers to reduce or eliminate vibrations, the audible whine of drills, microfractures, and some
Journal of long-term effects of medical implants, 13(6), 503-508 (2004-04-02)
Erbium:yttrium-aluminum-garnet (Er:YAG) cataract extraction has shown considerable promise as a new technique for lens nucleus removal prior to intraocular lens (IOL) implantation for the treatment of cataracts. Recent studies suggest that the laser energy is dissipated much more locally and
Facial plastic surgery clinics of North America, 12(3), 373-377 (2004-07-21)
The Erbium:YAG laser is a useful flexible tool for the surgeon interested in providing overall skin rejuvenation. With its unique wavelength, greater absorption, and less thermal injury, it can offer more precise ablation with greater safety and shorter healing times.
Journal of periodontal research, 39(4), 275-285 (2004-06-23)
Since lasers were introduced for the treatment of oral diseases, there has been considerable advancement in technology. As a result, numerous laser systems are currently available for oral use. Neodymium:Yttrium-Aluminum:Garnet (Nd:YAG), carbon dioxide (CO(2)) laser and the semiconductor Diode lasers
Journal of nanoscience and nanotechnology, 14(6), 4191-4195 (2014-04-18)
We have synthesized Er2S3/ZnS core/shell QDs by employing ErSt3, ZnSt2, and sulfur as precursors via a hot solution phase chemistry using a nucleation-doping strategy. X-ray diffraction (XRD), transmission electron microscope (TEM) and photoluminescence (PL) spectra were used to characterize the
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