Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium | CAS No. 210363-27-2

Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium

Basic Information

CAS Number

210363-27-2

Molecular Formula

C16H39N4Nb

Molecular Weight

380.42 g/mol

AD

Basic Physical Properties

CCN(CC)[Nb](=NC(C)(C)C)(N(CC)CC)N(CC)CC

InChI

InChI=1S/C4H9N.3C4H10N.Nb/c1-4(2,3)5;3*1-3-5-4-2;/h1-3H3;3*3-4H2,1-2H3;/q;3*-1;+3

InChIKey

CBCDPJRPMPTFKA-UHFFFAOYSA-N

LogP

3.892800000000003

Topological Polar Surface Area

22.08 Ų

Hydrogen Bond Donor/Acceptor

0 / 4

Safety Information

View Safety Information

Hazard Statement

H225 Highly Flammable liquid and vapor
Flammable liquids
H261 In contact with water releases flammable gas
Substances And Mixtures Which, In Contact With Water, Emit Flammable Gases
H319 Causes serious eye irritation
Serious eye damage/eye irritation
H335 May cause respiratory irritation
Specific target organ toxicity, single exposure; Respiratory tract irritation

Sensitiveness

air sensitive, moisture sensitive

Synonyms & References

English

  • t-Butyliminotris(diethylamino)niobium(V)
  • (tert)-Butyliminotris(diethylamino)niobium
  • t-Butylimido tris(diethylamido)niobium(V)
  • tris(N-ethylethanaminato)[2-methyl-2-propanaminato(2-)]-niobium

MDL Number

MFCD16659983

FAQ

What regulatory guidelines apply to Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium (CAS: 210363-27-2)?

Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium is subject to the GHS classification, REACH regulations, and FDA/EPA guidelines. Manufacturers and importers must comply with Hazard Communication Standard (HCS) and Material Safety Data Sheets (MSDS) requirements. REACH requires registration for substances above one tonne per year, including disclosure of chemical composition and safety data. EPA regulations may also apply to its storage, handling, and disposal due to potential toxicity and environmental impacts.

Are there alternatives to Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium in synthesis?

Several niobium compounds can serve as alternatives in synthesis, such as niobium pentachloride or niobium ethylaminocarbonyl. Isomers and analogs like ethylaminocarbonyl niobium(III) can also be considered. The choice of alternative depends on the specific reaction conditions and desired product properties. These alternatives can offer similar catalytic or reductive capabilities but may require different handling and safety precautions.

What is the market or research trend for Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium?

The market for Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium is currently niche but growing, driven by its use in advanced materials and catalytic applications. Research trends focus on exploring its potential in hydrogen storage materials and as a catalyst in organic synthesis. Demand is influenced by advancements in clean energy technologies and sustainable chemistry, with increasing emphasis on reducing environmental impact and improving product efficiency.

How should waste containing Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium be handled?

Waste containing Tris(N-ethylethanaminato)[(2-methyl-2-propanyl)imino]niobium should be collected in appropriate containers and handled according to local and national regulations. Incineration, chemical neutralization, or professional waste disposal services are common methods. Environmental protection precautions include minimizing exposure to waterways and soil, ensuring proper ventilation in handling areas, and providing personal protective equipment. Compliance with EPA and other relevant environmental protection agencies is crucial.

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