2,2′-DIPICOLYLAMINE: Comprehensive Technical Guide
Table of Contents
1. Product Specifications & Comparative Analysis
2. Industrial Applications & Functional Mechanisms
3. Operational Protocols & Safety Guidelines
1. Product Specifications & Comparative Analysis
| Parameter | 2,2′-DIPICOLYLAMINE | Competitor A | Competitor B |
|---|---|---|---|
| Chemical Formula | C12H12N4 | C10H10N2O2 | C14H14N4S |
| Purity Grade | ≥99.5% (HPLC) | ≥98% | ≥97.5% |
| Metal Content | <0.1ppm | 0.5-1.2ppm | 0.8-1.5ppm |
2. Industrial Applications & Functional Mechanisms
Coordination Chemistry: Forms stable complexes with transition metals (Cu2+, Zn2+, Ni2+) through pyridyl nitrogen coordination
Pharmaceutical Synthesis: Key intermediate in anticancer drug development (Platinum complex stabilization)
Catalysis: Asymmetric hydrogenation catalyst support in fine chemical production
3. Operational Protocols & Safety Guidelines
| Parameter | Specification |
|---|---|
| Storage Conditions | 2-8°C in nitrogen atmosphere |
| Handling PPE | Chemical goggles + Class III gloves |
| Solubility Profile | Methanol: 50mg/mL Water: 15mg/mL (pH dependent) |
4. Implementation Case Studies
Case 1: Metal-Organic Framework (MOF) Synthesis
– Challenge: Achieving uniform pore size distribution
– Solution: 0.5mol% 2,2′-DIPICOLYLAMINE as structure-directing agent
– Result: 35% increase in surface area (BET analysis)
5. Client Success Stories
PharmaTech Solutions (Germany):
– Application: Platinum-based chemotherapy drug stabilization
– Implementation: 2.2mmol/L in formulation buffer
– Outcome: 12-month stability improvement (+42% vs traditional agents)
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Email: info@vivalr.com
Phone: (86) 15866781826


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