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Product Details
Product Name | Cesium chloride |
Alias | |
English | |
Molecular formula | ClCs |
Molecular weight | 168.36 |
CAS No | 7647-17-8 |
EINECS | 231-600-2 |
Specification | 99.0%, 99.5% ,99.9% |
Appearance traits | White cube crystal. Moisture absorption. Density (g/mL, 25/4 C): 3.98. The melting point: 645 ºC. Boiling point (C degrees, atmospheric pressure): 1300 ºC. Solubility: really easily soluble in water, easily soluble in ethanol, methanol, insoluble in acetone. |
Use | Mainly used for the preparation of metal cesium and cesium containing single crystal raw materials, in addition to the preparation of conductive glass and analytical reagents, etc. |
Package | 1KG/ plastic bottle, 25KG/ cardboard drum |
Other product information |
Cancer Therapy | Hypothesized to alter the ionic balance in cancer cells by increasing cellular pH, leading to apoptosis. However, clinical evidence is lacking, and safety concerns persist. |
Uses |
Cesium chloride acts as a density gradient material in ultracentrifugation. It was utilized for ion identification through color and morphology of precipitates. Cesium chloride is also used in animal studies to explore arrhythmias due to its potassium-channel blocking properties. |
Production Methods | Synthesized by reacting cesium metal or cesium carbonate with hydrochloric acid. Can also be obtained as a byproduct of industrial processes. |
Safety and Regulatory Notes | Non-radioactive CsCl: Used in most applications safely. Radioactive Isotope (Cesium-137): Applied in radiation therapy. FDA warns against oral use for cancer therapy due to severe side effects, including toxicity and cardiac risks. |
InChI:InChI=1/ClH.Cs/h1H;/q;+1/p-1
We report systematic results from ab initio calculations with density functional theory on three cubic structures, zincblende (zb), rocksalt (rs) and cesium chloride (cc), of the ten 3d transition metal nitrides. We computed lattice constants, elastic constants, their derived moduli and ratios that characterize mechanical properties.
The interface modification of perovskite thin films has shown great potential to boost the performance of perovskite solar cells during the last few years. Here we demonstrate that cesium chloride (CsCl) as crystal seeds can markedly enhance the coverage of the CH3NH3PbI3−xClx absorber layer on TiO2 in planar heterojunction solar cells, thus boosting the power conversion efficiency (PCE) to 16.8%, with a fill factor (FF) of 0.79.
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Conditions | Yield |
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With hydrogenchloride;
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With HCl;
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Cs(1+)*NbCl6(1-)=Cs[NbCl6]
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niobium pentachloride
Conditions | Yield |
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In neat (no solvent); heating to 508°C in N2-stream;;
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