Piperidine Derivatives Supplier | Pharmaceutical & Specialty Intermediates
Piperidine Derivatives for Pharmaceutical and Specialty Chemical Synthesis
As a chemical supplier, sourcing partner, and trading company, Aure Chemical supports overseas B2B clients with sourcing of specified piperidine derivatives based on agreed quality requirements. Piperidine-based compounds are widely used as saturated nitrogen heterocyclic building blocks in pharmaceutical intermediate synthesis, fine chemical production, and specialty chemical applications.
As part of Aure Chemical’s broader portfolio of heterocycle derivatives for pharmaceutical intermediates, piperidine derivatives provide six-membered nitrogen heterocycles with useful substitution patterns, salt forms, and functional group compatibility for downstream synthesis.
Aure Chemical works with qualified supply partners to review sourcing feasibility, confirm product identity, coordinate available COA/SDS documentation, and support quotation preparation according to the specific CAS number, quantity, purity requirement, packaging need, and destination market.
Piperidine Derivatives in Pharmaceutical and Specialty Chemical Synthesis
Piperidine derivatives are important saturated six-membered nitrogen heterocycles used as organic intermediates in pharmaceutical intermediate synthesis and fine chemical routes. The piperidine ring contains one nitrogen atom and can be modified through N-substitution or ring substitution, allowing buyers to select suitable structures for polarity adjustment, functional group compatibility, and further downstream transformation.
Common piperidine-based organic intermediates include hydroxypiperidine derivatives, hydroxyethyl piperidines, chloroethyl and chloropropyl piperidine intermediates, aminopiperidine derivatives, phenylpiperidine derivatives, and hydroxyethoxyethyl piperidine products. These materials should be specified carefully by CAS number, substitution position, free base or salt form, assay method, impurity limits, and packaging requirement.
Because similar piperidine derivatives may differ only by side-chain length, substitution position, salt form, or functional group type, accurate product identification is essential before quotation, documentation review, and shipment arrangement.
Piperidine Derivatives Supplied by Aure Chemical
The following table highlights key piperidine derivatives that can be reviewed for sourcing feasibility. Availability, lead time, documentation, and packaging options depend on the specific product, supplier, batch, order quantity, and destination market.
| Product Name | CAS No. | Structural / Sourcing Focus | Product Link |
|---|---|---|---|
| 4-Hydroxypiperidine | 5382-16-1 | Hydroxyl-functional piperidine building block for organic intermediate applications | 4-Hydroxypiperidine CAS 5382-16-1 |
| 1-(3-Chloropropyl)piperidin-4-ol | 39512-49-7 | Chloropropyl hydroxypiperidine derivative for further substitution or functionalization | 1-(3-Chloropropyl)piperidin-4-ol CAS 39512-49-7 |
| 1-(2-Hydroxyethyl)piperidine | 3040-44-6 | Hydroxyethyl piperidine derivative with alcohol functionality | 1-(2-Hydroxyethyl)piperidine CAS 3040-44-6 |
| 1-(2-Chloroethyl)piperidine hydrochloride | 2008-75-5 | Chloroethyl piperidine derivative supplied as hydrochloride salt form | 1-(2-Chloroethyl)piperidine hydrochloride CAS 2008-75-5 |
| 3-Methylaminopiperidine dihydrochloride | 127294-77-3 | Aminopiperidine derivative supplied as dihydrochloride salt form | 3-Methylaminopiperidine dihydrochloride CAS 127294-77-3 |
| 1-Piperidinepropanol | 104-58-5 | Hydroxypropyl piperidine derivative for specialty intermediate applications | 1-Piperidinepropanol CAS 104-58-5 |
| 1-Phenylpiperidine | 4096-20-2 | Aryl-substituted piperidine derivative combining phenyl and piperidine structures | 1-Phenylpiperidine CAS 4096-20-2 |
| 1-(2-(2-Hydroxyethoxy)ethyl)piperidine | 3603-43-8 | Hydroxyethoxyethyl piperidine derivative with extended polar side chain | 1-(2-(2-Hydroxyethoxy)ethyl)piperidine CAS 3603-43-8 |
Additional piperidine derivatives may be reviewed upon request, subject to supplier availability, technical specification, documentation needs, regulatory review, and sourcing feasibility.
Key Piperidine Derivative Types
Hydroxypiperidine and Hydroxyalkyl Piperidine Derivatives
Hydroxypiperidine and hydroxyalkyl piperidine derivatives introduce alcohol functionality into saturated nitrogen heterocycle structures. Representative products include 4-Hydroxypiperidine CAS 5382-16-1, 1-(2-Hydroxyethyl)piperidine CAS 3040-44-6, and 1-Piperidinepropanol CAS 104-58-5.
These hydroxyalkyl piperidine intermediates may be selected when buyers need polarity adjustment, alcohol functionality, or further modification in downstream synthesis. For related hydroxyethyl cyclic amines, buyers may also compare Aure Chemical’s morpholine derivatives for pharmaceutical intermediates and piperazine derivatives for API building blocks.
Chloroalkyl Piperidine Derivatives
Chloroalkyl piperidine derivatives are commonly used as chloroalkyl intermediates for further substitution or functionalization. Aure Chemical can support sourcing review for 1-(3-Chloropropyl)piperidin-4-ol CAS 39512-49-7 and 1-(2-Chloroethyl)piperidine hydrochloride CAS 2008-75-5.
For chloroalkyl piperidine products, buyers should confirm side-chain length, substitution position, free base or hydrochloride salt form, purity method, water content, storage conditions, and transport classification before order confirmation.
Aminopiperidine Derivatives
Aminopiperidine derivatives contain additional amine functionality that can support selective substitution or downstream transformation depending on the route requirement. 3-Methylaminopiperidine dihydrochloride CAS 127294-77-3 is a representative aminopiperidine product supplied in dihydrochloride salt form.
For aminopiperidine products, salt equivalent, assay method, impurity limits, and moisture specification should be reviewed carefully because these factors may influence formulation of quotations, handling, and shipment planning.
Aryl Piperidine Derivatives
Aryl piperidine derivatives combine aromatic substitution with a saturated piperidine ring system. 1-Phenylpiperidine CAS 4096-20-2 is one example of a phenyl-substituted piperidine intermediate. Buyers should confirm product identity, assay method, physical form, and destination market requirements before quotation.
Hydroxyethoxyethyl and Propanol-Substituted Piperidines
Hydroxyethoxyethyl and propanol-substituted piperidines introduce extended polar side chains to the piperidine core. 1-(2-(2-Hydroxyethoxy)ethyl)piperidine CAS 3603-43-8 and 1-Piperidinepropanol CAS 104-58-5 are representative products in this category.
These structures may be reviewed when buyers need solubility adjustment, polarity control, or linker-type intermediate applications. Exact CAS confirmation is recommended because similar hydroxyalkyl piperidine derivatives can have different side-chain lengths and product properties.
Sourcing Considerations for Piperidine-Based Intermediates
When sourcing piperidine derivatives, accurate chemical identification and specification confirmation are essential. Small differences in substitution position, side-chain length, salt form, or functional group structure can result in different sourcing options, regulatory considerations, and pricing. To support efficient supplier verification, buyers are encouraged to provide the following information:
CAS number and exact product name: Confirm the correct CAS No., structural name, and any common synonyms used in your internal specification.
Substitution position: Clarify the substitution position on the piperidine ring, such as 3- or 4-substituted structures, when relevant.
N-substitution pattern: Specify whether the product is N-substituted, hydroxyalkyl, chloroalkyl, aryl, amino, or hydroxyethoxyethyl substituted.
Free base or salt form: Confirm whether the required material is a free base, hydrochloride salt, dihydrochloride salt, or another form.
Purity and assay method: Provide the required purity and preferred analytical method, such as GC, HPLC, titration, or another agreed method.
Water content and impurity limits: Share acceptable limits for water, color, residual solvents, or specific impurities if these are important to your process.
Physical form and packaging: Indicate whether the material is expected as a liquid or solid and whether bottles, drums, bags, or other packaging formats are preferred.
Storage and handling requirements: Provide any requirements related to moisture sensitivity, temperature control, odor control, volatility, or chemical compatibility.
Documentation needs: Confirm whether COA, SDS, TDS, specification sheet, test report, or other documents are required for approval or import clearance.
Quantity and destination: Provide target quantity, destination country or port, preferred trade term, and expected delivery schedule.
Aure Chemical can assist with specification confirmation, supplier communication, available COA/SDS/TDS coordination, packaging discussion, and export documentation review depending on the specific product, supplier, batch, and destination market.
Related Heterocycle Series
Piperidine derivatives are often compared with other cyclic amine and nitrogen heterocycle intermediates when buyers evaluate ring size, polarity, basicity, salt form, and functional group compatibility. For six-membered diaza heterocycles and N-substituted cyclic amines, buyers may also review piperazine derivatives for API building blocks.
For O,N-containing six-membered heterocycles and hydroxyethyl-type intermediates, Aure Chemical’s morpholine derivatives for pharmaceutical intermediates page provides related product coverage. Buyers comparing aromatic nitrogen heterocycles or piperidine-substituted pyridine structures may also review pyridine and aminopyridine derivatives for API synthesis. For five-membered nitrogen heterocycles and alternative ring-size options, pyrrolidine, pyrrolidone and pyrrole derivatives may also be relevant.
These related application pages help buyers compare different heterocycle series within Aure Chemical’s organic intermediates portfolio before moving to individual CAS product pages.
Documentation, Packaging and Export Support
Aure Chemical provides documentation and export support depending on the specific product, supplier, batch, order quantity, and destination market. Typical supporting documents may include Certificate of Analysis (COA), Safety Data Sheet (SDS), Technical Data Sheet (TDS), specification confirmation, packing information, and other available export-related documents.
Packaging can be discussed according to the physical form, salt form, odor, hygroscopicity, volatility, and handling requirements of each piperidine derivative. Liquid products may require sealed bottles or drums, while solid or salt-form products may require bags, fiber drums, inner liners, or other packaging formats depending on material properties and quantity.
Shipping terms such as EXW, FCA, FOB, CIF, or CPT can be reviewed case by case depending on product hazard classification, shipping route, order quantity, and buyer requirements. Regulatory documentation, customs clearance needs, and import restrictions vary by country and material, so final shipment feasibility should be confirmed before order confirmation.
Request a Quotation for Piperidine Derivatives
To request a quotation for piperidine derivatives, please provide the product name, CAS number, required purity, target quantity, destination country or port, preferred packaging type, and free base or salt form requirement if relevant. If you have an internal specification, previous COA reference, or special impurity limit, please include it in your inquiry.
Aure Chemical will review the inquiry, check sourcing feasibility, confirm available documentation, and provide feedback on price, lead time, packaging, and shipping options. For uncommon piperidine-based intermediates or customized sourcing requests, our team can also help evaluate practical availability through supplier communication.
Frequently Asked Questions
What piperidine derivatives does Aure Chemical supply?
Aure Chemical supplies and sources selected piperidine derivatives, including hydroxypiperidine, hydroxyethyl piperidine, chloroalkyl piperidines, aminopiperidine derivatives, phenylpiperidine, piperidinepropanol, hydroxyethoxyethyl piperidine, and related saturated nitrogen heterocyclic intermediates. Product availability depends on the specific CAS number, supplier, specification, regulatory requirements, and current market conditions.
Can Aure Chemical provide COA and SDS for piperidine derivatives?
Yes. For most products, Aure Chemical can coordinate available Certificate of Analysis (COA) and Safety Data Sheet (SDS) documents, subject to the specific product, supplier, batch, and requested grade. Additional documents such as TDS or specification sheets may also be available depending on the material.
Are piperidine derivatives available in kilogram or commercial quantities?
Some piperidine-based organic intermediates may be available in research, trial, kilogram, or larger quantities depending on the specific compound, supplier, production schedule, current market conditions, and destination market requirements. Buyers should provide the required quantity and delivery timeline when requesting a quotation.
How should I specify a piperidine derivative inquiry?
Please include the full product name, CAS number, desired purity, assay method if available, required free base or salt form, target quantity, packaging preference, destination country or port, and any critical impurity, color, or moisture limits.
Can Aure Chemical source hydroxyethyl, chloroethyl or aminopiperidine derivatives?
Yes. Aure Chemical can assist with inquiries for selected hydroxyethyl piperidine derivatives, chloroethyl or chloropropyl piperidine derivatives, aminopiperidine derivatives, aryl piperidines, and other specialized piperidine-based intermediates where sourcing feasibility can be confirmed.
What related heterocycle series are available from Aure Chemical?
In addition to piperidine derivatives, Aure Chemical supports sourcing of piperazine, morpholine, pyridine, aminopyridine, pyrrolidine, pyrrolidone, pyrrole, imidazole, and oxazoline derivatives as part of its broader heterocyclic intermediates portfolio.

