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HS Code |
169629 |
| Cas Number | 533-52-6 |
| Molecular Formula | C9H12O |
| Molecular Weight | 136.19 g/mol |
| Iupac Name | 1-Phenylpropan-2-ol |
| Appearance | Colorless to pale yellow liquid |
| Melting Point | -30 °C |
| Boiling Point | 219-221 °C |
| Density | 1.01 g/cm³ at 20 °C |
| Refractive Index | 1.517-1.519 |
| Solubility In Water | Moderately soluble |
| Flash Point | 92 °C |
| Smiles | CC(CO)C1=CC=CC=C1 |
| Synonyms | alpha-Methylbenzyl alcohol, 2-Phenyl-1-propanol |
As an accredited 1-Phenyl-2-Propanol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 1-Phenyl-2-Propanol, 100g, supplied in a sealed amber glass bottle with tamper-evident cap and clear hazard labeling. |
| Shipping | **Shipping Description for 1-Phenyl-2-Propanol:** 1-Phenyl-2-Propanol should be shipped in tightly sealed containers, protected from light and moisture. Store and transport at room temperature in compliance with local regulations. Ensure appropriate labeling and include safety data. Handle with care to prevent leakage or contact, as the compound may cause skin and eye irritation. |
| Storage | 1-Phenyl-2-Propanol should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from sources of ignition and incompatible substances such as strong oxidizers. Keep away from direct sunlight and moisture. Store at room temperature and ensure proper labeling to prevent accidental misuse or exposure. Handle with appropriate personal protective equipment (PPE). |
Applications of 1-Phenyl-2-Propanol in Industrial Manufacturing1-Phenyl-2-Propanol plays a distinct role in various fine chemical and high-value industrial synthesis processes. As a direct manufacturer with dedicated experience in consistent batch production, we supply this raw material to select downstream sectors where its attributes support regulatory compliance, formulation stability, and reproducible process performance. Below is a detailed overview of real-world application scenarios based on industrial practice and customer feedback. 1. Pharmaceutical Intermediate Synthesis (e.g., for Phenylpropanolamine and Related Compounds)Pharmaceutical ingredient manufacturers utilize 1-Phenyl-2-Propanol as a critical building block for synthesizing key intermediates, particularly within the phenylpropanolamine and related amine synthesis routes. The material’s alcohol group and aromatic structure facilitate specific hydrogenation, oxidization, or substitution reactions, essential for multi-step API and excipient formulations, especially under GMP conditions. Its reactivity plays a decisive role in determining yields and controlling by-product formation in cGMP batch reactors. Industry compliance standards
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2. Fragrance and Aroma Compound ManufacturingIndustrial perfumery and fragrance ingredient manufacturers employ 1-Phenyl-2-Propanol as a direct or modified component in the creation of floral and fresh odor notes. Its stability under reaction and blending conditions allows for controlled integration into complex aroma profiles, either via acetylation or as a primary alcohol base built into higher esters. Aroma compound lines benefit from both its characteristic scent and ability to function as a precursor for further molecular tailoring during synthesis scale-up. Industry compliance standards
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3. Flavor Ingredient Synthesis for Food Additive ProducersFood-grade manufacturers incorporate 1-Phenyl-2-Propanol, under regulatory allowance, as an intermediate in the synthesis of flavoring substances imparting mild floral and sweet notes for the processed foods sector. Under high-purity control, this material enters select synthetic flavor lines either as a precursor or by conversion to corresponding esters used for baked goods, confectionery, and beverage enhancement. Downstream partners monitor its conversion ratio to comply with stringent food additive legislations across regions. Industry compliance standards
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4. Fine Chemical and Specialty Solvent ProductionChemical synthesis plants utilize 1-Phenyl-2-Propanol within fine chemical production lines, particularly for specialty solvent or intermediate manufacture. The primary alcohol group and phenyl ring provide sites for targeted functionalization, including oxidation to ketones or acylation, enabling supply chains in chromatographic standards and custom synthesis for laboratory analysis reagents. Its consistent physicochemical profile assists downstream operators in maintaining analytical reproducibility and chemical specification controls. Industry compliance standards
Typical usage ratio
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At our facility, we have learned that subtle shifts in molecular design often translate to big changes in how a chemical fits into the manufacturing puzzle. 1-Phenyl-2-propanol represents one such case: its clean, secondary alcohol structure with a phenyl group grants it a balance of reactivity and selectivity—qualities that have grown increasingly important across fragrance, pharmaceutical, and specialty intermediate production. Our experience with the compound stretches back over a decade, during which time we refined our processes with close attention to purity, consistency, and safety. As a direct manufacturer, we see every variable that feeds into the final product, from selecting high-quality benzene-derived feedstock, through batch distillation, to tailored purification protocols. These influence everything from reaction yields to downstream handling, and set industrial-grade material apart from bulk, commoditized alternatives.
In the market, not every sample of 1-Phenyl-2-propanol conforms to the same standard. The specific demands of aromatic compound synthesis taught us that even trace impurities affect product quality, reactivity, and long-term stability. Over hundreds of production runs, we optimized for typical purity levels of 99% or higher on a GC area percent basis, with water content routinely controlled below 0.2%. Such diligence prevents adverse reactions—especially in pharmaceutical or fragrance settings, where off-odor, color formation, or side reactions can undermine end-product value. Physical characteristics also come into play. 1-Phenyl-2-propanol flows as a colorless to pale yellow liquid at ambient temperature, exhibiting a mild, characteristic odor. Its boiling point sits above 215°C, and it maintains stability for extended periods in inert storage. We learned that moisture control, drum selection, and careful inerting can make the difference between a clean batch and a contaminated outturn. Logistics teams and tank farm operators have come to rely on batch-to-batch consistency, as even slight color changes spark investigation.
From upstream selection to final QC, every step shapes the quality of 1-Phenyl-2-propanol. Our technical team continually logs unit conditions, monitors byproduct profiles, and optimizes reactor residence times. Over time, our plant engineers discovered that slight temperature drifts during hydrogenation introduced unwanted byproducts, so we invested in improved process control and in-line monitoring. The result: we regularly supply lots meeting stringent aromatic purity standards, which prove critical to pharmaceutical intermediates where regulatory scrutiny runs high. On the safety front, we adhere to strict closed-system handling, as 1-Phenyl-2-propanol—while not highly toxic—warrants careful management to aid safe downstream use. Every drum leaving our yard comes with a certificate of analysis that reflects our philosophy of full accountability from raw material to finished product.
Day-to-day, much of our output feeds into fragrance production, where 1-Phenyl-2-propanol’s clean, floral, and slightly spicy notes help round out high-end blends. Its solubility profile—mixing well with alcohols, esters, and many oils—opens room for creative perfumery and flavor work. Key customers use it as an intermediate for pharmaceuticals that require tight impurity profiles, as secondary alcohols provide the right balance for specific coupling or reduction reactions. Physical purity and sensory neutrality help avoid background flavors and odors, critical for regulatory approval and consumer acceptance. Chemical companies blending intermediates for agrochemical applications value its role in synthesis chains, leveraging its clean breakdown and manageable toxicity. Having supplied a wide range of industries, we have seen that the best results stem from a solid understanding of downstream requirements, and persistent communication between process chemist and supplier.
During long discussions at the plant, our chemists explored how 1-Phenyl-2-propanol distinguishes itself compared to primary aromatic alcohols or unsubstituted secondary alcohols. The main difference springs from the positioning of the phenyl group alongside the secondary alcohol functionality. This structure introduces a unique balance: the compound shows greater chemical stability than primary phenylalkanols while retaining enough reactivity for efficient esterification, oxidation, or reduction. In practical terms, this means better control over reaction outcomes, fewer side reactions, and a greater margin for process optimization. By contrast, phenylethanol or benzyl alcohol display higher reactivity to certain oxidants, which sometimes complicates formulation. Compared to other secondary alcohols, our product carries a distinctive aromatic profile, giving it a premium touch in fine fragrance work where both olfactory and performance criteria matter. This is why perfumers continue to request it by name, regardless of competing substitutes.
Markets have grown more demanding in recent years. As product safety regulations and customer expectations rise, we see traceability evolving from an afterthought to a purchase requirement. From the moment raw materials arrive at our gates, every lot passes through rigorous internal QC, with batch records that follow the material through blending, purification, packaging, and dispatch. These systems enable quick response to customer queries, as we can identify processing conditions and raw sources in seconds. For 1-Phenyl-2-propanol, this means that pharmaceutical and fragrance manufacturers gain confidence not only in consistency, but in the reliability of the supply chain. In a recent customer audit, robust tracking contributed to contract renewals and supply chain preference. Many buyers care as much about trust and compliance as they do about price or technical specification.
Our team has witnessed quality risks that are sometimes overlooked by less-experienced operators. Small shifts in feedstock composition, or use of poorly cleaned equipment, can introduce aldehyde byproducts or traces of other aromatic impurities. We found that extended storage in suboptimal containers causes color changes or the appearance of faint sour notes, a red flag in the fragrance and flavor sectors. Low-quality material can also deliver a weaker fragrance profile or compromised chemical performance. These pitfalls have reinforced our commitment to enclosed transfers, vacuum-sealed drums, and thorough instrument calibration between runs. Even after years in production, our QC team routinely reviews outlier samples to hunt down root causes, not just treat symptoms.
Many customers arrive with specific project needs, from pushing yield boundaries in pharma intermediates to creating a new signature scent. As manufacturers, we maintain an open-door approach to supporting process scale-up, application testing, and exploratory trials. For example, we have supplied kilogram and multi-ton lots for plant trials, adjusting batch sizes or packaging to synchronize with customer line demands. Feedback from development chemists and scale-up engineers directly influences our own process refinement, whether that means tighter control of certain byproducts or investigating catalytic alternatives. A few years ago, a customer flagged that a competing batch exhibited higher volatility and color instability; we invited their technical team to audit our lines, an exercise that led us to introduce upgraded filtration and more frequent tank screening. This iterative approach keeps us at the forefront, delivering more than just a commodity.
Strong supplier partnerships make a difference on technical projects where quality and responsiveness drive the schedule. We have seen firsthand how last-minute adjustments to delivery timing, packaging, or formulation capability can prevent costly downtime or project delays. Customers benefit when both teams combine process data and operational insight to tweak formulation parameters or optimize storage and handling—from drum selection to advice on atmospheric protection. Our approach prioritizes open communication, shared documentation, and site visits when needed. Whether troubleshooting filtration methods, reviewing spec sheets, or fielding a product complaint, our team treats customer concerns as mutual challenges, not externalities. This shared philosophy helps both sides respond faster when regulatory, operational, or commercial stakes run high.
With tightening global regulations, sourcing requirements now go far beyond technical data. Sustainability and safe handling play a larger role in purchasing decisions. In our own operations, we have invested in closed-loop waste recovery, emissions minimization, and water use reduction—steps that help us control material cost and support long-term viability. For customers driven by green chemistry mandates, we share detailed lifecycle data and assist with downstream compliance queries, including documentation for reach and other relevant chemical control regimes. Our approach to regulatory change remains practical; each adjustment is analyzed with both safety and downstream compatibility in mind. We see benefits not only in compliance but in supply chain security, as well-managed plants face fewer interruptions from unanticipated regulation.
The last several years taught us that keeping supply running smoothly involves more than optimizing one’s own processes. Raw material volatility, shipping challenges, and variable demand all require rapid, informed adaptation. As manufacturers, we monitor upstream benzene market trends, logistical bottlenecks at ports, and delivery schedules for critical reagents. In response to pandemic disruptions, we expanded local storage, lined up redundant suppliers for key inputs, and cross-trained operations staff. The result was a resilient operation that kept customers supplied even as other vendors struggled. For a specialty product like 1-Phenyl-2-propanol, this kind of planning defines who is reliable in the long run.
Over years of technical support, we have encountered several recurring customer challenges: unwanted coloration, minor off-odors, drum leakage, or compatibility issues with downstream ingredients. Technical teams often pull us in for root cause evaluations. More than once, we tracked the problem to drum contamination from external sources or interaction with poorly cleaned transfer equipment. Sometimes, reactions deviated because of small but significant differences in batch moisture or trace metal content. To address these concerns, we run extensive stress testing, maintain sample retention for several years, and encourage early technical dialogue. These measures have reduced repeat issues and shortened troubleshooting cycles.
Industry demand for 1-Phenyl-2-propanol evolves every year. While traditional sectors such as fragrance and flavor remain steady, we see growth from fine chemicals, advanced pharma intermediates, and specialty polymer modifiers. More complex downstream synthesis routes put new pressure on purity, stability, and regulatory compliance. Emerging customer segments pursue higher sustainability and enhanced safety records. These developments push us to rethink both process and service models: modular batch scaling, enhanced digital tracking, and rapid technical support. We recognize that staying relevant as a manufacturer requires not only better process chemistry but also increased transparency and willingness to adapt.
Having operated as direct manufacturers for years, our experienced technical team knows that every advancement must start with a deep understanding of both raw chemistry and customer context. We continue to invest in analytical technology and advanced process control, confident that every improvement in reproducibility, impurity tracking, and yield contributes directly to customer success. Regular benchmarking helps us maintain an edge: GC-MS libraries for impurity profiling, stereochemistry monitoring, and rapid micro-sampling shorten problem-solving cycles. Where customer processes demand documentation or specific impurity thresholds, we provide full method transparency and respond quickly to change requests. This level of technical leadership stems from years on the production floor, facing the same mix of batch complexity, tight deadlines, and strict regulatory standards that our customers encounter.
Users of 1-Phenyl-2-propanol see the result of choices made at each step in the supply chain. As chemical manufacturers, we know quality is only as strong as the weakest link—from raw material integrity to technical support. Over time, we have built long-term relationships with both buyers and user engineers, committed to delivering more than just product: clear information, fast response, and peaceful confidence that each batch is supported by genuine experience and a relentless drive to get things right. Any manufacturer can put forth specifications, but only a dedicated team committed to improvement every day can deliver the level of reliability that technical markets demand. Our ongoing investment in process, people, and transparency provides a foundation our customers continue to trust.