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HS Code |
101366 |
| Common Name | 4-Isopropyl-3-Methylphenol |
| Chemical Formula | C10H14O |
| Molecular Weight | 150.22 g/mol |
| Cas Number | 3228-02-2 |
| Appearance | White to off-white crystalline powder |
| Melting Point | 112-115 °C |
| Boiling Point | 263-265 °C |
| Solubility In Water | Slightly soluble |
| Odor | Pleasant, phenolic |
| Density | 1.03 g/cm³ |
| Flash Point | 108 °C |
| Logp | 3.4 |
| Pka | 10.1 |
As an accredited 4-Isopropyl-3-Methylphenol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Brown glass bottle labeled "4-Isopropyl-3-Methylphenol, 99%, 100g," with hazard symbols, lot number, and company logo, securely sealed. |
| Shipping | 4-Isopropyl-3-Methylphenol is shipped in tightly sealed containers to prevent contamination and moisture exposure. It is transported in accordance with chemical safety regulations, using clearly labeled packaging to indicate its contents. Proper documentation and safety data sheets accompany the shipment, and handling follows guidelines for flammable and irritant substances. |
| Storage | 4-Isopropyl-3-methylphenol should be stored in a tightly closed container, in a cool, dry, and well-ventilated area, away from sources of ignition, heat, and incompatible substances such as strong oxidizers. Avoid direct sunlight and moisture. The storage area should be clearly labeled and accessible only to trained personnel wearing appropriate personal protective equipment (PPE). Store at room temperature. |
Applications of 4-Isopropyl-3-Methylphenol in Industrial Manufacturing4-Isopropyl-3-Methylphenol, also known as IPMP or p-Thymol, supports critical antimicrobial and preservative functions across multiple industrial sectors. As the original manufacturer, we supply this raw material to specialized formulators who rely on its stable, broad-spectrum properties according to stringent global process, safety, and compliance requirements. Below, we elaborate on its established downstream applications, covering regulatory adherence, dosage recommendations, manufacturing steps, and resulting end-products. 1. Topical Pharmaceutical Antiseptics and DisinfectantsPharmaceutical manufacturers incorporate this compound as an active component in external-use antiseptic liquids, gels, and ointments. It demonstrates consistent antimicrobial activity against a wide range of gram-positive and gram-negative bacteria relevant to infection control. Integration into registered formulations, such as hand rubs and preoperative skin preparations, demands strict process validation to ensure batch uniformity and compliance with local pharmacopeial and GMP guidelines. Industry compliance standards
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2. Oral Care Products (Mouthwash & Toothpaste Manufacturing)Major global oral hygiene brands adopt this material as an active antibacterial ingredient. It functions effectively to reduce oral microbial loads associated with plaque and gingivitis. Downstream operations require accurate metering into syrup bases and careful adjustment to maintain compatible flavors and frothing agents without degradative interactions during hot mixing and later filling processes. Industry compliance standards
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3. Personal Hygiene (Deodorant and Antiperspirant Formulation)This compound serves as a targeted odor control and antibacterial agent in stick, aerosol, and roll-on deodorant applications. Formulators select it to enable long-lasting control of axillary microbiota without relying solely on heavy metals or potent alcohol carriers. Production lines must balance effective incorporation with cosmetic stability, particularly in emulsified and anhydrous roll-on matrices. Industry compliance standards
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4. Household Disinfectant FormulationsHousehold cleaning manufacturers use this material in specialized antimicrobial surface treatment concentrates, valued for its broad activity against household pathogens and resistance to hard water environments. Dosage depends on substrate compatibility, particularly for low-residue or rinse-free sprays and wipes, which require precise QC monitoring during batch blending and stability testing phases. Industry compliance standards
Typical usage ratio
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For years, our team at the factory has poured effort into each batch of 4-Isopropyl-3-Methylphenol. Workers here know it by its shorter handle—IPMP—but every drum and every carefully sealed bag carries the history and pride of precise chemical engineering. This compound draws strong attention from those in health, hygiene, and personal care fields because it brings solid antimicrobial results. We have watched IPMP become a key ingredient for soap makers, disinfectant formulators, dental supply outfits, and even wound-care companies. From the floor manager grinding the raw intermediates to the quality assurance analyst confirming purity in our labs, we know that small changes in process mean big differences for end-users and their critical formulas.
We don’t take shortcuts with IPMP. Many in the chemical field have learned through rough experience that a lax attitude toward synthesis leads to mixed or weak results. Our plant starts each run with carefully screened raw phenolic sources. Specs here matter: we target a purity above 98.5%, and every batch runs through gas chromatography before release. Those numbers are not just for the paperwork—they reflect the lessons learned from years of working closely with end-users who could detect the smallest impurity in color, odor, or application performance. When customers report cleaner solubility or finer milling, it comes down to these production checks, not just brand slogans.
IPMP’s main appeal to manufacturers lies in its dependable germicidal properties. From experience on the production floor, we know how important stability in solution means for bulk disinfection bases. Customers want a crystalline product every time. We mill it to a uniform particle size—usually under 500 microns—because this makes blending into soaps or oral care pastes predictable and repeatable. Over the years, after working closely with technical teams in consumer goods companies, we have refined our crystallization steps to support both speed and thorough wash-off in water.
Soaps and antiseptic washes perform better when the actives stay consistent from batch to batch. Nobody on a hospital cleaning crew wants surprises with their sanitizer’s effectiveness or odor. Many have come back to us describing how other phenolic products caused off-odors or yellowing when stored. IPMP holds a near-neutral scent and shows good color stability, even under warehouse lights or during high-humidity seasons. These are small details that only emerge from years of troubleshooting and after-sale technical support.
Colleagues ask why users choose IPMP instead of common phenol or cresol. Workers in our shipping department have fielded calls from customers who once switched to a cheaper, generic phenol only to hit snags in their formulation lines. The answer lies in the specific molecular profile of IPMP. Our chemical team builds each lot around the isopropyl and methyl substitutions, aligning the molecule to show far greater antimicrobial activity than plain phenolic compounds. Where standard phenols hit a plateau, IPMP slices through a wider range of bacteria, fungi, and even some persistent spores. The published tests have confirmed what our production engineers have heard for years from soap plant line managers: the antimicrobial reach beats that of more generic ingredients. Our experience with in-house comparative testing, years before outside labs caught up, showed the value of supporting technical clients with real-world performance data.
The difference isn’t just theoretical. We have supplied IPMP as both free-flowing crystalline powder and in pre-dispersed granules. Those running large mixer vessels mention faster dissolution and more predictable texture in their finished products. The extra methyl group not only strengthens germ-killing action but also reduces the risk of ingredient segregation during storage or transport. This stability really matters for clients seeking long shelf life or broad market distribution. Avoiding batch separation or caking in transit saves effort—and in this business, every efficiency makes a difference.
These days, regulatory standards keep evolving. Some of our long-term partners in Europe and Asia have noticed increased scrutiny of compound traceability. Because we synthesize IPMP in-house instead of outsourcing, we have direct control over documentation, project records, and raw material origin. Technical managers who visit our site appreciate seeing the transparent logbooks, traceable back to the earliest mixing tanks and reactors.
As more companies are pressed by consumers for safer, cleaner ingredient choices, IPMP holds an advantage by its straightforward phenolic structure and long record of safety. There’s less confusion here than with some newer, untested compounds. Where others chase hype with fresh-minted molecules, our outlook stays grounded in time-tested chemical craftsmanship. Dermatologists and oral care specialists reference safety data going back decades. We keep updated COSHH and dossier files ready for clients submitting products to regional health authorities, which avoids regulatory headaches down the line. If a sanitizer or paste turns up on an import checkpoint, our traceability and standardization will speak for themselves.
We take pride in follow-up, not just shipping a bag and forgetting the customer. Our technical team—some with decades of plant-floor experience—hear about real-world formulation challenges. They’ve helped cosmetic chemists adjust pH or solvents to maximize IPMP’s solubility without harshness, and worked with large-scale laundry detergent manufacturers looking to improve shelf stability. In re-circulating cleaning systems at food facilities, plant managers want an active that blends easily but resists loss to heat or oxidation. IPMP’s structure bears out in those conditions; our factory and customer labs have jointly confirmed it.
Dental and oral care producers often report trouble with harsh-tasting residues from other antimicrobial actives. By supporting custom milling and granulation for ultra-fine IPMP particles, we’ve helped their flavorists mask bitterness while capturing the germ-killing element dentists trust. The outcome shows in the feedback: improved patient satisfaction, easier product launches, and fewer batches scrubbed for quality drifts. Bringing customer insights back to the manufacturing line, we keep our product specs tightly matched to field demands.
No chemical stays static, not when end-users keep finding new possibilities. Early customers reached for IPMP mainly for hospital soaps, but today the demand spreads across industries. One leading personal care brand began using IPMP in acne washes, citing not only antimicrobial punch but also consumer preference for milder, less medicinal scents. In animal care, veterinary supply chains report fewer incidences of formulation instability compared to earlier alternatives.
We’ve worked with industrial cleaning contractors who require strong antimicrobial washdowns that avoid harsh phenolic odors and staining on stone or tile. IPMP’s physical profile—colorless, low-melting, and non-staining—suits these jobs. Workers on the ground measure product impact by result, not just claim sheets, and the clean finish leaves facilities managers satisfied without extra rinsing. Over time, the consistency of our IPMP has reduced callbacks and keeps repeat business high among professional cleaning companies.
Every manufacturer wants to tout “high quality” but real reliability begins with raw material screening and precise handling. Our shop manages temperature, pressure, and oxidant addition throughout the process. Even slight changes can trigger side products or color shifts. Several years back, we adjusted our distillation protocols to trap volatile by-products, which cut odor complaints almost to zero. Those tweaks followed feedback loops from customers and our own sensory panels. Adjusting the finishing steps—cooling rates, filter selection, drying curves—tightens up finish particle moisture content, which stops caking and strengthens shelf appearance.
Some suppliers cut corners by blending IPMP with cheaper fillers. We have fielded too many calls from soap plant engineers who lost yield or saw their high-value machinery clogged with unknown residues. Our approach stays straightforward: we ship pure, unmixed product and back it with supporting chromatograms. Regular customers value that reliability. We’ve found, through years of repeated collaboration, that solving these real production headaches sets the best foundation for long-term supplier relationships.
Working directly with end-users, we hear needs on every scale. Small-batch dermatology clinics want 25-kilogram drums; national personal care makers order by the ton. As one of the larger IPMP producers, we maintain flexible shift schedules and inventory management to meet those demands. We routinely plan stock buffering for urgent customer timelines, and coordinate with packaging partners to offer moisture-barrier bags and tamperproof containers. Each of these steps comes from real-world supply chain lessons—not just what looks good on a data sheet.
Freight and storage always pose challenges we can’t ignore—no matter how well designed our product, humidity and exposure during transport affect every batch. We use triple-sealed liners and temperature-monitored storage for critical export loads, reducing spoilage or clumping. Having seen returns caused by improper packaging, we now customize container type to match client storage preferences, be that automated dosers, hand scoops, or dust-controlled bulk silos. Keeping direct channels to warehouse managers, we step in if there’s ever a shipping hiccup.
Modern markets push for sustainable manufacturing, and we have committed to incremental improvements. Our plant engineers designed effluent recycling measures which recover reaction solvents for reuse, lightening our waste load. Over time, we have replaced sulfur-heavy oxidants with greener options, and invested in air filtration technologies for cleaner stack emissions. These measures don’t just tick regulatory boxes—they come from the recognition that long-lived suppliers think about the next generation, not just the next quarter’s profits.
We run safety drills and site maintenance rounds to avoid chemical spills and off-spec releases. Community health officers have visited our facility, and we welcome their feedback. Near-miss investigations and real-environment stress tests have sharpened our protocols, ensuring safer deliveries, safer production, and a product clients can trust through changing regulatory cycles.
As market needs shift, we keep support for innovators alive. Our technical staff works with research students, R&D labs, and industrial partners to trial IPMP in experimental formulas. Recent projects include slow-release hygiene coatings, biofilm-resistant dental instruments, and environment-friendly cleaning tablets. We adapt our milling, drying, and QA testing lines to turn out custom lots for these early-stage applications. The feedback often comes quickly—engineers call or email with tweaks, and we refine further. Years spent building this responsive support set us apart from remote “box-shippers”.
We have partnered with several biotech startups to assess IPMP as a safer phenolic alternative in diagnostics, leveraging its clean profile and low impurity footprint. These projects depend on our willingness to shift synthesis methods, scale reactions up or down, and maintain strong communication between site chemists and the customer’s scientists. Sometimes, we open our process data for joint review, aiming for better transparency and learning for all sides. The new applications coming from sectors as diverse as aquaculture and microelectronics show that collaboration with manufacturers is still essential for real progress.
Much of what we have improved at our site grew from listening, not just theorizing. Small manufacturers, multinational brands, independent chemists—each shares stories of what works and what breaks. Our shipping staff keep logs of every inquiry and communicate hiccups and near misses. Even in a highly regulated world, the bond between supplier and user is shaped in daily calls, shared problem-solving, and keeping promises on timelines and product quality.
The best advances in our IPMP production did not start at a boardroom table but from direct accounts of what users needed and what frustrated them. Coincidence and feedback, not simply reactive transactions, have guided segment-focused improvements. Experienced technical managers prefer suppliers who recognize and adapt to these process details, building trust batch by batch and year after year.
Managing a plant isn’t just about tonnage but about knowing each run’s quirks—solvent drift on humid days, pump wear across shifts, operator intuition guiding troubleshooting. Our outlook on 4-Isopropyl-3-Methylphenol follows from everyday experience, watching how a tweak in raw material drying or a change in filter paper transforms more than just test results. These are stories behind every pail and drum shipped. Clean, consistent, and fully traceable product not only solves technical hurdles but lays the groundwork for client—supplier relationships built on mutual respect and shared improvement. The market will keep evolving, and formula trends will shift, but strong fundamentals and honest collaboration keep the chemistry moving forward.