Product Details
| Product Name: 1-Naphthaldehyde | CAS No.: 66-77-3 |
| EC-No.: 200-633-4 | Min. Order: 1KG |
| Purity: 99% | Supply Ability: 20TONS |
| Release date: 2025/11/29 |
1-Naphthaldehyde (C₁₁H₈O) is an aromatic aldehyde featuring a formyl group (–CHO) attached to the naphthalene ring system. Its applications stem from its reactivity as an aldehyde and the extended conjugation of the naphthalene core, making it valuable primarily in organic synthesis, coordination chemistry, and materials science. Here's a breakdown of its key applications:
Organic Synthesis Building Block:
Imidazoles & Benzimidazoles: Condensation with diamines (e.g., o-phenylenediamine) yields biologically important heterocyclic scaffolds found in pharmaceuticals.
Oxazoles & Thiazoles: Reactions with α-hydroxy/α-mercapto carbonyls provide access to these heterocycles, common motifs in drugs and natural products.
Quinolines & Naphthyridines: Serves as a starting material in multi-step syntheses of complex fused nitrogen heterocycles with medicinal applications.
Dyes & Pigments: Extended conjugation leads to colored compounds.
Organic Electronics: Used in synthesizing materials for OLEDs, OFETs, or sensors.
Non-linear Optical (NLO) Materials: Potential building blocks.
Precursor to Alkenes (via Knoevenagel Condensation): Reacts with active methylene compounds (e.g., malononitrile, ethyl cyanoacetate) to form highly conjugated, electron-deficient alkenes. These products are intermediates for:
Synthesis of Heterocycles:
Reduction: Can be reduced to 1-Naphthalenemethanol, a useful synthon and fragrance component.
Oxidation: Can be oxidized to 1-Naphthoic acid, another versatile building block.
Coordination Chemistry (Ligand):
Catalysis: Forming metal complexes used as catalysts (e.g., for oxidation, epoxidation, asymmetric synthesis).
Sensors: Designing metal complexes whose fluorescence or color changes upon binding specific ions or molecules.
Bioinorganic Chemistry: Modeling metalloenzyme active sites or developing metallodrugs.
MOFs/Coordination Polymers: Acting as linkers in constructing metal-organic frameworks with potential for gas storage, separation, or catalysis.
The carbonyl oxygen acts as a Lewis basic site, allowing it to coordinate to metal ions.
Used to synthesize Schiff base ligands: Condensation with primary amines (R-NH₂) forms imines (R-N=CH-Naphthyl). These ligands are crucial for:
Material Science:
Chemical Sensors: Detecting ions, pH, or small molecules via fluorescence turn-on/off.
Biological Labeling/Imaging: Designing fluorophores for cellular studies.
OLED Emitters/Layers: As components in organic light-emitting diodes.
Fluorescent Probes & Dyes: Derivatives of 1-naphthaldehyde (especially those formed via Knoevenagel condensation or Schiff base formation) often exhibit strong fluorescence due to the rigid naphthalene core and extended conjugation. These are explored for:
Polymer Chemistry: Can be incorporated as a monomer or functional group modifier to alter polymer properties (e.g., fluorescence, solubility, reactivity).
Niche or Research Applications:
Photoremovable Protecting Group (PRPG): Derivatives have been explored as "caged" compounds where the aldehyde moiety protects a functional group; light irradiation cleaves it, releasing the active molecule in a controlled spatiotemporal manner.
Perfumery/Fragrance: 1-Naphthalenemethanol (derived from its reduction) has a mild, floral-orange blossom scent and is used in some fragrances. The aldehyde itself has a sharper, less pleasant odor but may find niche use.
Corrosion Inhibition: Some Schiff base derivatives show potential as corrosion inhibitors for metals.
Key Advantages Driving its Use:
Commercial Availability: Relatively inexpensive and readily available.
Reactive Aldehyde Group: Enables diverse transformations (condensations, reductions, oxidations).
Rigid, Planar Naphthalene Core: Provides stability, fluorescence potential, and influences coordination geometry.
Extended Conjugation: Enhances optical/electronic properties useful for materials.
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- Since: 2006-04-03
- Address: Room 2015, No.2 Building Kaixin Mansion

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