Source Yellow 3 Fluoro 2 Methylbenzaldehyde for Synthesis
Find 30 listings for yellow 3 fluoro 2 methylbenzaldehyde to compare industrial and technical grade options. Buyers can evaluate purity standards, packaging sizes, and CAS numbers to identify suitable synthesis material intermediates for their specific chemical manufacturing needs; compare the available evidence and request quotations based on your requirements.
Key considerations
Products List
Comprehensive Sourcing Guide
Yellow 3 Fluoro 2 Methylbenzaldehyde Sourcing Guide
Procuring yellow 3 fluoro 2 methylbenzaldehyde requires careful attention to the specific physical state and coloration observed in current market listings. While some industrial intermediates appear as colorless liquids, the target compound is frequently listed with a distinct yellow hue and white or colorless powder forms depending on the batch purity. Buyers must verify that the observed appearance matches the specific CAS registry number associated with the desired synthesis material, as variations in molecular weight and formula can indicate different isomers or impurities.
The commercial landscape for this synthesis material intermediate presents a wide range of packaging options, from small 1kg bags to large 1000kg IBC drums. Sourcing teams should prioritize suppliers who explicitly state their packing capabilities align with the required logistics, such as 25kg drums or 200kg bags. It is critical to confirm that the listed product standard, often cited as 98% or 99%, corresponds to the actual assay results provided in the certificate of analysis before committing to a bulk order.
Product Scope and Observed Listing Signals
Buyers should analyze the observed listing signals to distinguish between generic synthesis intermediates and the specific yellow 3 fluoro 2 methylbenzaldehyde required for their chemical processes. The market data indicates a diverse range of product models and CAS numbers, including entries with molecular weights of 138.14 and 188.13, which suggests that not all yellow-colored intermediates share the exact same chemical structure. Procurement specialists must cross-reference the molecular formula C8h7fo or C7h4f2o against the specific needs of their synthesis pathway to avoid purchasing a structurally similar but functionally incorrect compound.
The availability of free samples and the presence of environmental protection attributes are key signals of supplier readiness in this sector. When evaluating listings, buyers should look for explicit mentions of customization availability and specific delivery times, such as the 3-5 day window observed in some high-confidence facts. These signals help identify suppliers capable of rapid response and flexibility, which is essential when sourcing specialized intermediates that may be required for urgent production schedules or pilot plant trials.
Technical Specifications to Verify
Verification of technical specifications is paramount when sourcing this synthesis material, particularly regarding the assay and purity standards. The observed data shows standards ranging from 98% to 99.0%, and buyers must ensure the supplier provides a certificate of analysis that confirms the assay meets or exceeds the minimum 98% requirement for their specific application. Relying solely on the listed standard without independent verification can lead to process failures, as slight deviations in purity can significantly impact the yield and quality of the final pharmaceutical or agrochemical product.
Physical properties such as density, flash point, and molecular weight serve as critical identifiers for the correct chemical entity. Buyers should request specific data points like a density of 1.292 or a flash point of 110 ℃ to confirm the identity of the material, especially when multiple CAS numbers are available in the market. Ensuring the molecular weight matches the expected value, such as 142.10 or 138.14, is essential for stoichiometric calculations in synthesis, and any discrepancy should trigger an immediate request for re-testing or clarification from the supplier.
Compliance and Safety Documentation
Compliance documentation must be rigorously reviewed to ensure the supplier adheres to international safety and environmental standards. The presence of ISO9001 certification is a strong indicator of a quality management system, but buyers should also verify that the supplier explicitly addresses environmental protection measures in their documentation. Given the chemical nature of synthesis intermediates, understanding the safety data sheet (SDS) and ensuring the product meets local regulatory requirements for handling and transport is a non-negotiable step in the procurement process.
Safety data regarding the flash point and density is crucial for determining storage and shipping requirements. Buyers must confirm that the supplier provides accurate hazard classifications based on the observed physical properties, such as the 110 ℃ flash point, to ensure safe handling protocols are in place. Additionally, verifying that the product origin is clearly stated, such as China, helps in assessing the regulatory framework under which the chemical was manufactured and ensures that all necessary import permits and safety declarations are prepared in advance.
Cost Drivers and Commercial Terms
Cost drivers for yellow 3 fluoro 2 methylbenzaldehyde are heavily influenced by the purity level, packaging format, and the specific customization requirements of the buyer. The observed price range of 1 to 2500 USD reflects the variability in order quantities and the complexity of the synthesis process, with higher purity grades and specialized packaging often commanding a premium. Buyers should negotiate based on the total cost of ownership, including the cost of the 25kg drums or 200kg bags, rather than focusing solely on the unit price per kilogram.
Commercial terms such as minimum order quantities (MOQ) and lead times significantly impact the procurement strategy and inventory planning. The market data indicates MOQs ranging from 1 to 2000 units, allowing for flexibility in both small-scale testing and large-scale production runs. However, buyers must clarify the delivery time, which can vary from 3-5 days to longer periods depending on the supplier's capacity and the specific product model, to avoid production delays and ensure a steady supply chain for critical synthesis operations.
Supplier Qualification and Quality Control
Supplier qualification should focus on the ability to maintain consistent quality across different batches and product models. The presence of various product models, such as BXY12325 and ZLW10100, suggests that suppliers may offer a range of intermediates, and buyers must ensure the specific model ordered meets the exact technical specifications required. Establishing a relationship with a supplier who demonstrates a commitment to quality control, evidenced by ISO9001 certification and clear standard definitions, is essential for long-term reliability.
Quality control processes must include rigorous testing of the molecular formula, assay, and physical properties before shipment. Buyers should require pre-shipment inspection reports that verify the color, appearance, and density against the agreed-upon standards. Implementing a system where samples are tested upon receipt and compared against the initial free sample or provided specifications helps mitigate the risk of receiving substandard material and ensures that the synthesis material intermediates perform as expected in the production process.
Long-Term Procurement Checks
Long-term procurement checks involve establishing a continuous monitoring system to ensure the supplier maintains the required quality and delivery standards over time. Buyers should regularly review the supplier's performance against key metrics such as the consistency of the 98% or 99% standard and the reliability of the 3-5 day delivery window. Periodic audits of the supplier's quality management system and safety protocols help identify potential issues before they impact the supply chain and ensure that the supplier remains compliant with evolving industry regulations.
It is also vital to maintain a diversified supplier base to mitigate risks associated with single-source dependencies. Buyers should evaluate the availability of alternative product models and packaging options to ensure flexibility in case of supply disruptions. By regularly updating the list of qualified suppliers and verifying their current certifications and product standards, procurement teams can ensure a resilient supply chain capable of meeting the dynamic demands of the synthesis material market.
FAQs
What is the standard purity for yellow 3 fluoro 2 methylbenzaldehyde?
The standard purity is typically 98.0% or higher, with some grades reaching 98.5% or 99.0%. Industrial and technical grades are available, ensuring consistent quality for synthesis intermediates. Buyers should verify the specific assay requirements, such as 98% minimum, to match their production standards and regulatory needs.
Can I get free samples of yellow 3 fluoro 2 methylbenzaldehyde?
Yes, free samples are often available for evaluation before placing a bulk order. This allows buyers to verify the physical appearance, color, and purity levels. Samples help ensure the product meets technical specifications, such as molecular weight and formula, before committing to larger quantities like 1kg or 200kg drums.
What packaging options are available for yellow 3 fluoro 2 methylbenzaldehyde?
Packaging is flexible and can be customized as demanded or requested by the buyer. Common options include 1kg, 10kg, 25kg, 100kg, and 200kg drums, as well as IBC drums. This variety supports different storage needs and logistical requirements, ensuring safe handling and transport for both small and large industrial orders.
How fast is the delivery time for yellow 3 fluoro 2 methylbenzaldehyde?
The typical delivery time is 3-5 days for standard orders. This rapid turnaround supports urgent production schedules and just-in-time inventory management. Buyers should confirm specific lead times with suppliers, as expedited shipping or custom packaging requests may slightly extend the processing period depending on current stock levels and logistics.
Is yellow 3 fluoro 2 methylbenzaldehyde suitable for industrial use?
Yes, it is widely used as a synthesis material intermediate in industrial applications. The product is available in industrial and technical grades, with purity levels ranging from 98% to 99%. Its chemical properties, including specific molecular weights and formulas, make it suitable for various chemical manufacturing processes requiring precise reagents.
What certifications are provided for yellow 3 fluoro 2 methylbenzaldehyde?
Products often come with ISO9001 certification, indicating adherence to quality management standards. This certification ensures consistent production processes and reliable product quality. Buyers seeking verified suppliers should request documentation to confirm compliance, which is crucial for maintaining quality control in sensitive industrial and technical applications involving chemical intermediates.





























