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Merck

325929

Sigma-Aldrich

Terbium(III) acetate hydrate

99.9% trace metals basis

Synonim(y):

Trójoctan terbu

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About This Item

Wzór liniowy:
Tb(CH3CO2)3 · xH2O
Numer CAS:
Masa cząsteczkowa:
336.06 (anhydrous basis)
Numer WE:
Numer MDL:
Kod UNSPSC:
12352103
Identyfikator substancji w PubChem:
NACRES:
NA.23

Próba

99.9% trace metals basis

Formularz

crystals and lumps

przydatność reakcji

core: terbium
reagent type: catalyst

ciąg SMILES

O.CC(=O)O[Tb](OC(C)=O)OC(C)=O

InChI

1S/3C2H4O2.H2O.Tb/c3*1-2(3)4;;/h3*1H3,(H,3,4);1H2;/q;;;;+3/p-3

Klucz InChI

CUFVJHPGFMTTMB-UHFFFAOYSA-K

Opis ogólny

Terbium(III) acetate hydrate is a crystalline compound with a high boiling and melting point. Due to its luminescent properties, it is mainly used as a precursor to produce phosphors, scintillators, catalysts, and magneto-optic materials.

Zastosowanie

Terbium(III) acetate hydrate can be used:
  • As a precursor to prepare terbium oxide catalyst.
  • As a surface passivator to fabricate photoluminescent carbon quantum dots.
  • As a dopant to prepare Li co-doped ZnO nanoparticles which can be applied in electro-optic and magnetic devices.
  • As a sol-gel precursor to prepare lead zirconate titanate thin films.
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Kod klasy składowania

11 - Combustible Solids

Klasa zagrożenia wodnego (WGK)

WGK 3

Temperatura zapłonu (°F)

Not applicable

Temperatura zapłonu (°C)

Not applicable

Środki ochrony indywidualnej

Eyeshields, Gloves, type N95 (US)


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Odwiedź Bibliotekę dokumentów

Noah J J Johnson et al.
ACS nano, 10(9), 8299-8307 (2016-09-03)
Paramagnetic gadolinium (Gd(3+))-based nanocrystals (NCs) with a large number of confined gadolinium ions can be expected to heavily enhance the longitudinal (T1) relaxation of water protons compared to clinical gadolinium complexes with only a single paramagnetic center. However, paramagnetic Gd(3+)-NCs
Thomas Myeongseok Koo et al.
Journal of hazardous materials, 408, 124870-124870 (2021-01-03)
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Bo Zhou et al.
Advanced science (Weinheim, Baden-Wurttemberg, Germany), 5(3), 1700667-1700667 (2018-03-30)
Upconverting materials have achieved great progress in recent years, however, it remains challenging for the mechanistic research on new upconversion strategy of lanthanides. Here, a novel and efficient strategy to realize photon upconversion from more lanthanides and fine control of

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