reagent type: catalyst
n20/D 1.464 (lit.)
232 °C (lit.)
14-17 °C (lit.)
0.96 g/mL at 20 °C (lit.)
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Eye Irrit. 2 - Flam. Liq. 3 - STOT SE 3
Central nervous system
3 - Flammable liquids
105.8 °F - Pensky-Martens closed cup
41 °C - Pensky-Martens closed cup
Eyeshields, Faceshields, Gloves, type ABEK (EN14387) respirator filter
Insira o número de lote para pesquisar o Certificado de análise (COA).
Insira o número de lote para pesquisar o Certificado de origem (COO).
If available for a given product, the recommended re-test date or the expiration date can be found on the Certificate of Analysis.
The lot specific COA document can be found by entering the lot number above under the "Documents" section.
The material will melt/freeze at 18-20 deg C, therefore the material can freeze when shipped during the winter months. It can be warmed in a water bath to about 30 deg C to change the state without harming the chemical.
This chemical is very soluble in ethanol, carbon tetrachloride, hexane, benzene, or isopropanol. Water is not recommended as a solvent because titanium (IV) isopropoxide will hydrolyze. (Precautions should be taken to make sure the solvents used do not contain any water - anhydrous grades would be recommended).
The viscosity of titanium (IV) isopropoxide is 4.5 centipoise at 25 deg C.
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Transportation information can be found in Section 14 of the product's (M)SDS.To access the shipping information for this material, use the link on the product detail page for the product.
Ask a Scientist here.
In this article, we discuss issues critical to successful application of the electrospinning technique, including control of individual nanofibers to form secondary structures and assembly of nanofibers into 3D architectures.
Titanium dioxide (TiO2) is an important n-type semiconducting material that shows interesting characteristics such as photoswitchable surface wettability, high photocatalytic activity, bistable electrical resistance states and high electron drift mobility.
Few Monolayer Atomic Layer Deposition (ALD) on Surfaces and Interfaces for Energy Applications
In this paper, we discuss recent advances in the preparation of various TiO2 porous structures via hard and soft-templating routes. Specifically, we focus on recent developments in TiO2 mesoporous thin films in a combined sol-gel and evaporation-induced self-assembly (EISA) process.
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