Product Information
General Information
Description
Product Introduction
2,2-Dimethyl-3,6,9-trioxa-2-siladecane (ANL-1NM2, CAS No. 62199-57-9) is a silicon-containing ether electrolyte solvent designed for advanced lithium-ion battery electrolyte systems.
This compound combines a trimethylsilyl group with a polyether-like chain structure, providing characteristics including low viscosity, good lithium salt compatibility, and improved electrochemical stability. As a functional electrolyte solvent, ANL-1NM2 has been investigated for use in lithium-ion batteries, high-voltage electrolyte systems, and next-generation energy storage devices.
Compared with conventional carbonate electrolytes, silicon-containing ether solvents such as ANL-1NM2 are studied for improving thermal stability, electrolyte safety, and lithium-ion transport properties.
Structural Characteristics
Silicon-Based Ether Structure
ANL-1NM2 contains a trimethylsilyl ether group, providing:
- Improved chemical stability
- Silicon-based functional properties
- Compatibility with lithium battery electrolyte systems
Polyether Chain
The ether oxygen-containing chain provides:
- Lithium-ion coordination capability
- Enhanced salt dissolution ability
- Improved ionic transport behavior
The ether segments can interact with lithium ions and support electrolyte conductivity.
Low-Viscosity Organic Solvent Characteristics
The molecular structure contributes to:
- Good fluidity
- Electrolyte formulation flexibility
- Improved ion mobility
Key Research Applications
1. Lithium-Ion Battery Electrolyte Solvent
ANL-1NM2 is primarily investigated as a functional electrolyte solvent for lithium-ion batteries.
Applications include:
- Lithium salt electrolyte preparation
- Lithium-ion conductivity studies
- Electrolyte formulation optimization
- Battery cycling performance evaluation
- High-voltage electrolyte research
It can be combined with lithium salts such as LiTFSI for non-aqueous electrolyte systems.
2. Advanced Electrolyte Systems
ANL-1NM2 is studied as an alternative solvent component for improving electrolyte performance.
Applications include:
- Low-viscosity electrolyte formulations
- High-temperature battery electrolyte research
- Electrochemical stability studies
- Next-generation lithium battery development
3. Solid-State and Polymer Electrolyte Research
Due to its ether functionality, ANL-1NM2 can be explored in advanced electrolyte systems.
Applications include:
- Polymer electrolyte modification
- Hybrid electrolyte systems
- Lithium-ion transport studies
- Interface engineering research
4. Lithium Metal Battery Research
ANL-1NM2 is investigated in emerging lithium battery technologies.
Applications include:
- Lithium metal anode electrolyte studies
- Dendrite suppression research
- Electrolyte/anode interface analysis
- High-energy-density battery development
Advantages
- Silicon-containing functional electrolyte solvent
- Good compatibility with lithium salts
- Ether-based lithium-ion coordination capability
- Low viscosity for electrolyte formulation
- Suitable for advanced battery research
- Supports next-generation electrolyte development
Storage & Handling
- Store in a tightly sealed container.
- Keep in a dry and cool environment.
- Protect from moisture and air exposure.
- Handle under inert atmosphere when preparing battery electrolytes.
ANL-1NM2 is reported to be air-sensitive and moisture-sensitive.
Research Areas
- Lithium-ion batteries
- Lithium metal batteries
- Battery electrolyte solvents
- Solid-state battery research
- Electrochemical energy storage
- Organosilicon materials
FAQ
What is ANL-1NM2?
ANL-1NM2 is a silicon-containing ether compound used as a functional electrolyte solvent for lithium battery research.
What is ANL-1NM2 used for?
ANL-1NM2 is mainly used for:
- Lithium-ion battery electrolytes
- Lithium salt solvent systems
- Advanced electrolyte development
- Electrochemical energy storage research
Is ANL-1NM2 an electrolyte salt?
No. ANL-1NM2 is an electrolyte solvent, not a lithium salt. Lithium salts such as LiPF₆, LiFSI, or LiTFSI are dissolved in solvents to form electrolytes.
What is the role of ANL-1NM2 in lithium batteries?
It acts as a solvent component that helps dissolve lithium salts and enables lithium-ion transport during battery operation.
What is the difference between ANL-1NM2 and carbonate solvents?
| Property | ANL-1NM2 | Carbonate Solvents |
|---|---|---|
| Chemical Type | Silicon-containing ether | Organic carbonate |
| Lithium Coordination | Ether oxygen interaction | Carbonyl oxygen interaction |
| Application | Advanced electrolyte research | Commercial Li-ion batteries |
| Research Focus | Safety and stability improvement | Standard electrolyte systems |
