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5-Chloropentyl Acetate

    • Product Name 5-Chloropentyl Acetate
    • Alias 1-acetoxy-5-chloropentane
    • Einecs 274-655-9
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    175018

    Chemical Name 5-Chloropentyl Acetate
    Molecular Formula C7H13ClO2
    Molecular Weight 164.63 g/mol
    Cas Number 41343-92-4
    Appearance Colorless to pale yellow liquid
    Boiling Point 221-223 °C
    Density 1.027 g/cm3 at 25 °C
    Refractive Index 1.422-1.424
    Flash Point 92 °C
    Solubility Insoluble in water; soluble in organic solvents
    Smiles CC(=O)OCCCCCl
    Storage Temperature Store at 2-8 °C
    Purity Typically ≥98%
    Odor Characteristic ester-like odor
    Synonyms 5-Chloroamyl acetate

    As an accredited 5-Chloropentyl Acetate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle labeled "5-Chloropentyl Acetate, 100 mL," features hazard symbols, chemical formula, and safety instructions, securely sealed.
    Shipping 5-Chloropentyl Acetate is shipped in tightly sealed containers to prevent leaks and evaporation. Containers must be clearly labeled and handled with care, keeping them upright during transport. The chemical is shipped in accordance with hazardous material regulations, protected from heat, moisture, and incompatible substances to ensure safe delivery.
    Storage **5-Chloropentyl acetate** should be stored in a cool, dry, well-ventilated area away from sources of ignition, heat, and direct sunlight. Keep the container tightly closed and clearly labeled. Store away from incompatible substances such as strong oxidizers and acids. Use appropriate chemical storage cabinets, and ensure proper grounding and bonding when transferring the material to prevent static discharge.
    Application of 5-Chloropentyl Acetate

    Applications of 5-Chloropentyl Acetate in Industrial Manufacturing

    5-Chloropentyl acetate serves as a key intermediate in specialized chemical processes for several advanced manufacturing sectors. As an experienced raw material manufacturer, we supply this compound to end-users who require precise quality for downstream production. Our technical team collaborates with partner industries to support specific compliance, dosing, and formulation requirements for high-performance industrial applications.

    1. Pharmaceutical Intermediate Synthesis

    This raw material supports the synthesis of complex pharmaceutical intermediates. Manufacturers employ it for alkylation and esterification steps in active pharmaceutical ingredient (API) development, particularly for compounds within chlorinated aliphatic frameworks. Its purity and processability influence batch yields and impurity profiles. Our batch traceability matches pharma-grade compliance, which is essential for regulatory filings and customer audits.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • European Pharmacopoeia (Ph. Eur.) for ingredient specifications
    • US FDA 21 CFR Part 210/211 for pharmaceutical manufacturing controls
    • ISO 9001 for quality management systems

    Typical usage ratio

    • 45–80% as a starting reagent in multi-step organic synthesis (determined by target API and process route)
    • Ratio adjusted based on reaction scale and impurity control strategy

    Downstream process integration

    • Enters alkylation stage as a nucleophilic agent
    • Integrated into batch reactors under inert atmosphere
    • Used for derivatization in intermediate coupling reactions
    • Processed with high-precision in GMP-compliant pharmaceutical plants

    Final product types

    • Pharmaceutical APIs involving chlorinated aliphatic moieties
    • Drug precursors for anti-infective and anti-cancer medications
    • Specialty contract-manufactured intermediates for custom drug projects

    2. Agrochemical Synthesis

    This compound acts as a chain extender and structural component in crop protection product synthesis. Agrochemical manufacturers use it to prepare ester-based pesticide and herbicide intermediates, specifically where halogenated carbon chains improve efficacy and environmental breakdown rates. Consistency in chemical profile supports product registration and stewardship submissions for global markets.

    Industry compliance standards

    • FAO/WHO Pesticide Specifications and Quality Control Standards
    • REACH Regulation (EC) No 1907/2006 for registration and traceability
    • ISO 9001 for process and batch consistency
    • Local EPA pesticide registration guidelines

    Typical usage ratio

    • 35–65% by mass in esterification steps forming active agrochemical molecules
    • Ratio depends on required chain length, active loading, and process efficiency targets

    Downstream process integration

    • Feeds into transesterification reactors after pre-treatment
    • Merged during chain-length extension via Grignard or acylation reactions
    • Monitored for batch purity before conversion to downstream actives
    • Participates in post-reaction purification and splitting for formulation-grade output

    Final product types

    • Pre-emergent and post-emergent herbicide intermediates
    • Insecticide building blocks with chlorinated chains
    • Specialty growth regulator precursors
    • Formulated bulk pesticide actives for global export

    3. Specialty Polymer Additive Manufacturing

    5-Chloropentyl acetate functions as a reactive intermediate in producing halogenated side-chain monomers. Polymer manufacturers integrate it to modify the solubility, flexibility, and barrier properties of specialty resins. Its contribution improves finished resin performance in coating, packaging, and membrane applications, where precise side-chain architecture enhances commercial competitiveness.

    Industry compliance standards

    • ISO 9001 for manufacturing quality control
    • EU RoHS Directive 2011/65/EU for restricted substances in electronic coatings
    • EN 71-3 for toy and food-contact resin safety
    • Customers’ internal performance and purity specifications

    Typical usage ratio

    • 5–25% in reactive monomer batch formulation, depending on polymerization method and targeted polymer backbone
    • Adjusted based on the side-chain density and application requirements

    Downstream process integration

    • Participates in pre-polymerization as a halogenated monomer source
    • Mixed during continuous or batch emulsion and solution polymerization
    • Used for chain transfer in radical polymerization to achieve controlled molecular weight
    • Feeds into in-line blending units for compound adjustment

    Final product types

    • Specialty resins for industrial coatings
    • Food packaging films with enhanced barrier properties
    • Functional membranes for filtration and separation
    • Impact- and chemical-resistant composite plastics

    4. Fine Chemical and Fragrance Intermediate Production

    Specialty chemical processors use this compound as a controlled intermediate to synthesize halogenated aliphatic esters and tailored functional fluids. In the fragrance industry, it enters processes forming base chemicals for aroma molecules with clean, controlled volatility profiles. Batch-specific documentation supports regulatory checks for downstream use in consumer or specialty industrial products.

    Industry compliance standards

    • IFRA (International Fragrance Association) Standards for ingredient approval
    • EU REACH Annex XVII restrictions for downstream safety
    • ISO 22000 or FSSC 22000 for plant hygiene in flavor/fragrance manufacture
    • Internal end-user purity and contaminant specifications

    Typical usage ratio

    • 10–35% in ester-forming and side-chain modification steps for fine chemicals
    • Ratio selected based on desired profile, batch scale, and volatility requirements

    Downstream process integration

    • Fed into continuous or batch esterification columns for aroma compound synthesis
    • Employed during side-chain building in high-purity fragrance precursors
    • Incorporated in blending tanks for viscosity and vapor pressure adjustment
    • Subjected to post-processing with distillation or chill filtration for odor purity

    Final product types

    • Fragrance intermediates for perfumery and home care
    • Specialty esters for lubricants and heat transfer fluids
    • Aroma chemicals in flavor blends
    • Functional fine chemical components for chemical industry clients
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    Certification & Compliance
    More Introduction

    5-Chloropentyl Acetate: Supporting Today’s Fine Chemical Demands

    Overview

    For nearly two decades, we have been committed to the development and production of specialty intermediates. 5-Chloropentyl acetate stands out among our lineup due to its distinctive balance of reactivity and manageable handling. Our team produces this molecule in a dedicated facility that emphasizes process control and reliability. Chemists appreciate substances that perform predictably and remain consistent from batch to batch. Customers ask us for 5-Chloropentyl acetate by name because they know our batches deliver on that promise of consistency.

    Understanding 5-Chloropentyl Acetate

    The molecular structure of 5-Chloropentyl acetate provides a solid foundation for further transformations in both laboratory and production scales. Its chain offers five carbons terminated by a chloride and an ester, making it naturally versatile. In the chemical industry, a molecule with both a functional group and a good leaving group becomes a bridge to further complexity. No merchant or third-party can guarantee quality here – the only way is to manage it at the source, starting with pure starting materials and ending in shelf-stable finished product.

    We manufacture 5-Chloropentyl acetate under strict controls, utilizing high-purity chlorinated alkanes and acetic anhydride. Each batch passes GC and NMR checks before shipment, confirming there’s no carry-over from upstream feeds and no residual water to complicate downstream processing. Impurities, even at low levels, will complicate scale-up. Our approach is to focus on each variable, adjusting reactant ratios, temperature, and isolation protocols until results stabilize over years, not just quarters.

    Model and Specification

    Most of our clients request standard technical grade material for routine use and bulk synthesis. That typically means a product in liquid form, colorless, with purity consistently exceeding 98%. Volatility matters, so we keep a tight watch over moisture and halide ion content. Our inventory rotates quickly, and storage logistics keep the product fresh. Many other suppliers dilute or blend to extend shelf life, but we commit to the material coming off the line – no unnecessary stabilizers or bulk fillers. Shipments leave in high-density polyethylene drums, sealed and nitrogen-flushed.

    Industry Applications and Real-World Value

    5-Chloropentyl acetate steps in wherever a reliable atom source is needed for constructing nitrogen or oxygen-bearing chains in advanced synthesis. This includes active pharmaceutical intermediates, fragrance design, and surface-modifying agents, among others. Process chemists turn back to this building block time and again because it couples with a wide array of nucleophiles in straightforward one-pot operations. In our own experience, we’ve seen companies use it to build up quinoline, pyridine, and even longer aliphatic frameworks.

    Recent feedback from one major customer in the agrochemical area highlighted the value of consistent purity: their previous supplier sent batches with varying acid number and halide residue, resulting in variable yields and recrystallization failures. After switching, they reported processes that ran without unknown peaks in their HPLC traces, giving their QC manager confidence. Our own technical staff maintains well-documented control parameters for every order, and we don’t let product out of the plant without a fresh analysis record.

    Key Differences: Why 5-Chloropentyl Acetate Is Not Just Another Alkyl Acetate

    Putting 5-Chloropentyl acetate side by side with simple alkyl acetates or non-chlorinated counterparts shows crucial differences. The five-carbon backbone gives this molecule greater flexibility for chain extension. The terminal chlorine opens doors for nucleophilic substitution, unlike its non-halogenated siblings, which only serve as solvents or bland intermediates. What stands out in use is the controlled balance between leaving ability and resistance to premature hydrolysis. If you run a reaction with standard ethyl acetate or butyl acetate, nothing meaningful happens except as a carrier. Swap them for the chlorinated pentyl analog and watch your coupling and substitution chemistry illuminate.

    In our specific production process, the control of byproducts like monochloropentenes demands vigilance. High throughput never excuses poor separation. We’ve learned that short-cutting washes or column steps creates long-term headaches. Any hint of unsaturation or excessive acetate hydrolysis in the output not only ruins yields downstream, it puts R&D scale trials at risk of outright failure.

    Process Insights: Getting It Right from Raw Materials to Drums

    Our production line starts with nucleophilic substitution using premium chlorinated pentanes and reacts under anhydrous, buffered conditions. Years ago, early batches suffered from batch-to-batch inconsistencies tied to feedsourced from outside China. We took the risky (but ultimately correct) step to synthesize our own feedstock, controlling for chain isomer distribution before the acetate comes into play. Each distillation tower downstream is set for minimal holdup and short residence time, avoiding thermal decomposition.

    Reliable 5-Chloropentyl acetate only comes from strict exclusion of water and oxygen. Our teams monitor using inline sensors, and we back up with bench chemistry. The bottling team pulls random samples as a matter of routine, and any off-spec lot is flagged for immediate rework – not just relabeled or blended away. Waste minimization also matters. Every gram that leaves as finished goods represents ten grams that might have ended up as wash water or off-gas in older setups. We constantly review our material balances, not just to save money but to ensure clean chemistry.

    Supporting Chemists and Engineers: Our Experience in Customer Solutions

    Customers call us about more than specifications. One mid-sized pharmaceutical lab hit a wall with their standard halide intermediates producing difficult side products. Our chemists proposed process tweaks tailored for 5-Chloropentyl acetate, dialing in solvent selection for optimal phase separation and sodium scavenging. In another case, a fragrance manufacturer reported sensory contamination traced to non-native byproducts in potassium carbonate washes; our quality records traced it to a new drum liner material, which we immediately discontinued. Solid technical support pays off in long-term loyalty. These are not hypothetical scenarios but real success stories that only come from a full commitment to the product.

    Compliance, Safety, and Environmental Responsibility

    Regulatory expectations steadily increase across global markets. We’ve never waited for inspectors to set the bar – we raise it ourselves. Every batch of 5-Chloropentyl acetate comes with a detailed impurity profile, and our facilities adhere to standards like ISO 9001 and local health and safety laws. We track each drum through a digital chain of custody, never relying on third-party warehousing or relabeling. This prevents counterfeiting, strengthens customer trust, and ensures full material traceability.

    Handling chlorinated intermediates brings environmental pressures. Our process effluent never leaves the property untreated. We invested in a multi-stage scrubber system with continuous pH monitoring, cutting chloride emissions below the provincial threshold by more than half over five years. Waste drums never accumulate – pickups move on a set schedule, tracked through electronic manifests. Our ambition: zero notice of violation or environmental complaint. Once, a minor valve seal failure led to a ten-liter spill. We halted shipments until root cause analysis was complete and modifications to secondary containment and alarm training prevented recurrence.

    Continuous Improvement and Staff Training

    We know that a specialty chemical producer’s reputation lives and dies by the competence of its people. Our plant engineers participate in yearly refresher seminars, covering everything from reaction thermodynamics to incident response. Lab analysts cycle through proficiency testing, and we rotate junior chemists across process and QC roles so they see the full picture, not just isolated steps. This investment pays off – experienced eyes catch off-color hues, minute shifts in odor, and slight deviations in reactivity before they progress to problems. Few trading houses can offer that.

    Every team meeting covers incident reports, even minor ones. If someone finds a leaking sight glass gasket, that lesson circulates within 24 hours. Our timeline for corrective action is measured in days, not quarters. We tie our process learnings back into updated SOPs, so future staff start on a stronger footing. This feedback loop between plant, lab, and management shrinks the gap between a good product and an exceptional one.

    Market Outlook and Forward Planning

    Demand for intermediates like 5-Chloropentyl acetate does not stay static. What once served as an experimental building block in pharmaceuticals or agrochemicals may now anchor a new wave of specialty polymers or engineered materials. Just five years ago, less than ten percent of our production left the region. Now, over one-third supplies partners in Europe and North America, who require documentation at every step. Partnering with research teams lets us anticipate new grades, purity needs, and even packaging formats before market demand spikes.

    We watch the fluctuations in raw material costs and regulatory enforcement worldwide. Our forward planners hedge feeds when appropriate and negotiate long-term logistics for predictable supply. Spot shortages hit less prepared competitors hard, yet our warehouse has never run dry for our key customers. We see our business not as simple selling, but as a dynamic cycle of anticipation, improvement, and delivery.

    Addressing Quality Issues in a Changing Market

    Unwanted variability in specialty intermediates leads to lost time and wasted resources in downstream applications. In years past, we heard from buyers tired of fighting batch-to-batch inconsistency, especially in critical steps where minor degradants poison multi-step syntheses. Our protocol gives buyers and technical staff a transparent look at testing methods, GC fingerprints, and retention samples held for every lot. Nobody needs to guess about a product’s shelf life or performance when the manufacturer holds themselves accountable. We do not chase profit through cutting corners or blending sub-spec lots.

    Letting the customer’s application drive our approach keeps things practical. A small research group may only want liters for benchwork, with ultra-clean product and maximum transparency. A rubber additives plant wants drum lots, shipped on a reliable cycle, and quick turnaround for certificate copies. We cater to both, because both groups push us to do better. Large distributors, in contrast, rarely give feedback – only the end user working directly with the manufacturer can do that effectively.

    Solving Logistics and Traceability Challenges

    Damaged drums or mislabeled barrels are more than an inconvenience – they can destroy a year’s worth of research or delay a regulatory audit. Our internal barcode system tracks all outgoing goods, linking back to raw material batches and QC readings. If a logistics partner ever reports a drum breach or temperature excursion, we coordinate rapid re-shipment with priority processing. Our warehouse team tracks inventory in real time, not monthly or quarterly. That level of oversight grows from producing, not just selling, a specialty molecule day after day.

    Once, a shipment routed via maritime freight ran into customs delays, raising fears about extended transit and product degradation. Our technical manager wrote detailed handling guides for the consignee, including temperature logs and links to fresh stock, giving their team complete transparency. This experience led us to develop alternate supply options, including qualified forwarders who keep charter slots open for scheduled customers during high season.

    Why It Matters: Building Chain-of-Custody from Factory to Lab Bench

    Researchers, developers, and production chemists often care less about paperwork than about pure, reproducible chemical input. We see our job as building a bridge from the synthesis tank to the customer’s bench, creating a continuous record each step of the way. In an era of product recalls and rising regulation, this is no longer optional – it’s the only way to do business responsibly. Where traders push labeled containers without oversight, we sign off on every order with our technical team’s initials and a digital archive of analytical results.

    The difference between true manufacturer and agent comes through in long-term relationships. Every time a client’s research manager calls us with a technical query, we respond by sharing test data, not excuses. If an end user reports a process change or a novel use case, we relay best practices and support trials. Transparency, traceability, and a willingness to learn alongside our partners give us confidence in the future of 5-Chloropentyl acetate beyond its status as just another building block.

    Expertise Anchored by Experience

    Experience teaches humility and the importance of incremental improvement. Mistakes in the reaction flask translate to risk on the customer’s shop floor. We keep learning, benchmarking our yields, purity, and process efficiency against yesterday’s performance. Being an actual manufacturer, not a label on a bottle, means facing those realities, learning from missteps, and building trust with every drum shipped. Our technical staff, production team, and customer support group meet regularly, discussing not only sales but feedback, upcoming projects, and newly published challenges in the scientific press.

    Supply disruptions, changing regulatory standards, and shifting customer needs push us to adapt. That responsiveness grows out of years of hands-on work with 5-Chloropentyl acetate, watching it move from raw batch to finished application, supporting customers in industries as diverse as pharmaceuticals, agrochemicals, polymers, and fine fragrances.

    Looking Ahead – The Path Forward

    Our company does not approach specialty chemicals as just another commodity. The complexity of molecules like 5-Chloropentyl acetate, and the complexity of customer expectations, drive us to keep standards high. We constantly review process efficiency, product purity, delivery performance, and customer satisfaction. This approach keeps our offerings in line with the highest expectations – from major pharma houses to boutique R&D shops.

    We believe in the fundamental value of talking straight and delivering on our promises. That means delivering chemicals that perform as intended, with the documentation, support, and responsiveness that customers deserve. Where others may offer lower prices or shorter lead times, we provide what matters long term: reliability, accountability, and a relentless focus on making each batch better than the last. Our story with 5-Chloropentyl acetate continues – fueled by the knowledge that those who use the product count on us not just to supply, but to solve problems, anticipate challenges, and support innovation.