| Identification | Back Directory | [Name]
TETRAKIS(DIMETHYLAMINO)TIN | [CAS]
1066-78-0 | [Synonyms]
TIN (IV) DIETHYLAMIDE TETRAKIS(DIETHYLAMINO)TIN OCTAMETHYLSTANNANETETRAAMINE tetrakis(diethylamido)tin(iv) tetrakis(diethylamino)tin(iv) N-ethyl-N-[tris(diethylamino)stannyl]ethanamine | [Molecular Formula]
C8H24N4Sn | [MDL Number]
MFCD00014860 | [MOL File]
1066-78-0.mol | [Molecular Weight]
295.01 |
| Chemical Properties | Back Directory | [Boiling point ]
110 °C0.5 mm Hg(lit.) | [density ]
1.125 g/mL at 25 °C(lit.) | [refractive index ]
n20/D 1.49(lit.) | [Fp ]
102 °F | [form ]
liquid | [Specific Gravity]
1.104 | [Hydrolytic Sensitivity]
8: reacts rapidly with moisture, water, protic solvents | [InChI]
1S/4C4H10N.Sn/c4*1-3-5-4-2;/h4*3-4H2,1-2H3;/q4*-1;+4 | [InChIKey]
IFVSPCQTOMZHOP-UHFFFAOYSA-N | [SMILES]
CCN(CC)[Sn](N(CC)CC)(N(CC)CC)N(CC)CC |
| Hazard Information | Back Directory | [Uses]
Tetrakis(diethylamido)tin(IV) can be used:
- As a precursor to synthesize mesoporous tin silicate xerogels via non-hydrolytic templated sol–gel synthesis. These xerogels are potential catalysts for aminolysis and for the Meerwein–Ponndorf–Verley reduction.
- To produce stable metal oxide thin films on the surface of carbon electrode materials.
- To fabricate an ultrathin layer of SnO2 on carbon nanotubes, which can be used as anodes for lithium-ion batteries. This ultrathin layer helps to enhance the cycling stability and rate capability of anodes.
| [reaction suitability]
core: tin |
|
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