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Merck

733490

Sigma-Aldrich

碲化锑 (III)

greener alternative

powder, −325 mesh, 99.96% trace metals basis

别名:

Antimony sesquitelluride, Antimony telluride, Diantimony tritelluride

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About This Item

线性分子式:
Sb2Te3
CAS号:
分子量:
626.32
MDL號碼:
分類程式碼代碼:
26111700
PubChem物質ID:
NACRES:
NA.23

化驗

99.96% trace metals basis

形狀

powder

環保替代產品特色

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

粒徑

−325 mesh

mp

629 °C

密度

6.5 g/mL at 25 °C (lit.)

環保替代類別

SMILES 字串

[Te]=[Sb][Te][Sb]=[Te]

InChI

1S/2Sb.3Te

InChI 密鑰

BPDQXJZWVBPDSN-UHFFFAOYSA-N

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一般說明

Antimony(III) telluride (Sb2Te3) is a three dimensional topological insulator that can be used as a binary sesquichalogenide. It forms p-type semiconducting films for the formation of thermoelectric materials.
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應用

Sb2Te3 in combination with bismuth(III) telluride (Bi2Te3) can form super-lattices, which facilitate the fabrication of devices such as thermoelectric generators.

象形圖

Exclamation markEnvironment

訊號詞

Warning

危險聲明

危險分類

Acute Tox. 4 Inhalation - Acute Tox. 4 Oral - Aquatic Chronic 2

儲存類別代碼

13 - Non Combustible Solids

水污染物質分類(WGK)

WGK 3

閃點(°F)

Not applicable

閃點(°C)

Not applicable


分析证书(COA)

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在文件库中查找您最近购买产品的文档。

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Pradyumnan, P. P.; Swathikrishnan
Indian Journal of Pure and Applied Physics, 48, 115-115 (2010)
Scherrer, H.; Scherrer, S.
CRC Handbook of Thermoelectronics, 211-211 (1995)
A wearable thermoelectric generator fabricated on a glass fabric
Kim SJ, et al.
Energy & Environmental Science, 7(6), 1959-1965 (2014)
Observation of time-reversal-protected single-Dirac-cone topological-insulator states in Bi 2 Te 3 and Sb 2 Te 3
Hsieh D, et al.
Physical Review Letters, 103(14), 146401-146401 (2009)
Ambipolar field effect in the ternary topological insulator (Bi x Sb 1-x) 2 Te 3 by composition tuning
Kong D, et al.
Nature Nanotechnology, 6(11), 705-705 (2011)

商品

热电材料包含多种固体化合物,它们可以转化热能和电能。

Thermoelectric materials comprise a wide range of solid compounds distinguished by their ability to convert thermal and electrical energy.

Higher transition metal silicides are ideal for anisotropic thermoelectric conversion due to their Seebeck coefficient anisotropy and mechanical properties.

Higher transition metal silicides are ideal for anisotropic thermoelectric conversion due to their Seebeck coefficient anisotropy and mechanical properties.

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