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The Regioselective Trichlorinated Pyrimidine Building Block for Ceritinib, ALK-5 Inhibitors, and Advanced Agrochemicals: 2,4,5-Trichloropyrimidine (CAS# 5750-76-5)

2,4,5-Trichloropyrimidine (CAS# 5750-76-5), also known as 2,4,5-trichloro-1,3-diazine or 2,5,6-trichloropyrimidine, is a halogenated heterocyclic compound with the molecular formula C₄HCl₃N₂ and a molecular weight of 183.42 g/mol. Its molecular structure features a pyrimidine ring bearing three chlorine substituents at the 2-, 4-, and 5-positions, creating a distinct reactivity profile that enables sequential and regioselective nucleophilic aromatic substitution (SNAr) reactions. The compound typically appears as a colorless to pale yellow clear liquid with a density of 1.6001 g/mL at 25°C, a boiling point of 84°C at 1 mmHg (96°C at 12 mmHg), a refractive index of n20D 1.574, and a flash point above 110°C. It is soluble in dichloromethane and THF, but slightly soluble in water. The compound is typically supplied at ≥98% purity (GC) and should be stored at 2–8°C in a tightly sealed container protected from light and moisture.

2,4,5-Trichloropyrimidine is a strategically important regioselective trichlorinated pyrimidine building block that serves as the essential intermediate in the synthesis of Ceritinib (LDK378) —a second-generation ALK inhibitor approved for the treatment of ALK-positive metastatic non-small cell lung cancer (NSCLC)—and as a versatile platform for ALK-5 inhibitors, EGFR inhibitors, and agrochemical actives. The compound’s unique 2,4,5-trichloro substitution pattern establishes a distinct reactivity hierarchy (C4 > C2 > C5), enabling sequential, orthogonal functionalization for the construction of complex drug-like molecules with high synthetic efficiency. Based on its chemical characteristics and industrial significance, this article systematically analyzes the key properties, core application areas, global market structure, regulatory landscape, and future outlook of this strategically important halogenated heterocyclic building block.

Core Application Fields and Demand

Market demand for 2,4,5-trichloropyrimidine (CAS# 5750-76-5) is concentrated in four primary sectors: pharmaceutical synthesis and API manufacturing (approximately 50–55% of global consumption), agrochemical development (approximately 25–30%), reactive dyes and specialty chemicals (approximately 10–15%), and analytical chemistry and research applications (approximately 5–10%). Its unique regioselective trichloro substitution pattern and proven utility in targeted cancer therapy synthesis serve as the core drivers of sustained demand growth.

In pharmaceutical synthesis and API manufacturing, 2,4,5-trichloropyrimidine is the critical starting material for the synthesis of Ceritinib (LDK378, Zykadia®) , a second-generation ALK inhibitor developed by Novartis for the treatment of ALK-positive metastatic non-small cell lung cancer. The synthesis of Ceritinib relies on the regioselective nucleophilic aromatic substitution of 2,4,5-trichloropyrimidine with 2-(isopropylsulfonyl)aniline to form 2,5-dichloro-N-(2-(isopropylsulfonyl)phenyl)pyrimidin-4-amine—the key pyrimidine fragment in the Ceritinib synthetic route. The three chlorine atoms in 2,4,5-trichloropyrimidine exhibit limited selectivity differences during nucleophilic substitution reactions, requiring careful control of reaction conditions to achieve the desired regioselectivity. The compound is also used in the synthesis of potent and selective anaplastic lymphoma kinase (ALK-5) inhibitors for anti-tumor treatment, as well as in the preparation of kinase inhibitors including ALK and EGFR pathway inhibitors. Recent developments in the process chemistry of Ceritinib have focused on replacing hazardous reagents like sodium hydride with safer alternatives such as potassium carbonate or DBU in suitable solvents, improving the sustainability profile of the manufacturing process. The compound is also a key intermediate in the synthesis of antiviral and antibacterial agents.

In agrochemical development, 2,4,5-trichloropyrimidine serves as a critical synthetic intermediate in the preparation of herbicides and pesticides. It can be functionalized to create agrochemical agents that are effective against a range of agricultural pests, helping to improve crop yields. The regioselective functionalization principles applied to this compound allow for the development of novel agrochemical agents that are both effective and environmentally friendly. Additionally, 2,4,5-trichloropyrimidine has demonstrated fungicidal and sporicidal properties. It also plays a role in the synthesis of herbicides and other crop protection agents. The compound’s derivatives have also been explored for their potential use in the development of new agrochemical agents with improved efficacy and reduced environmental impact.

In reactive dyes and specialty chemicals, 2,4,5-trichloropyrimidine is an important intermediate for novel reactive dyes. It serves as a precursor for the synthesis of 2,4,6-trichloropyrimidine-5-carbaldehyde, which acts as an intermediate in the production of reactive dyes utilized in textile industries. The compound’s versatility in creating compounds with enhanced dyeing properties has been highlighted in case studies demonstrating improved dyeing efficiency. It is also used as a synthetic raw material for new antibacterial and anti-inflammatory pharmaceuticals.

In analytical chemistry and research applications, 2,4,5-trichloropyrimidine is employed as a reagent in analytical methods, aiding researchers in the detection and quantification of other chemical substances. It is also utilized in biochemical research to study enzyme inhibition and metabolic pathways, contributing to a better understanding of cellular processes and disease mechanisms.

Key Properties and Reactivity Profile

2,4,5-Trichloropyrimidine (CAS# 5750-76-5) is a regioselective trichlorinated pyrimidine whose value derives from the orthogonal reactivity of its three chlorine substituents.

Key physicochemical parameters include:

  • Molecular Formula: C₄HCl₃N₂
  • Molecular Weight: 183.42 g/mol
  • CAS Number: 5750-76-5
  • EINECS Number: 227-286-8
  • MDL Number: MFCD03788200
  • Synonyms: 2,4,5-Trichloro-1,3-diazine; 2,5,6-Trichloropyrimidine; 5-Chloro-2,4-dichloropyrimidine; NSC 40593
  • Appearance: Colorless to pale yellow clear liquid
  • Purity: ≥98% (GC); ≥99% available
  • Density: 1.6001 g/mL at 25°C
  • Boiling Point: 84°C at 1 mmHg; 96°C at 12 mmHg; 258.5°C at 760 mmHg (predicted)
  • Refractive Index: n20D 1.574
  • Flash Point: >110°C (>230°F)
  • LogP: 2.29 (calculated)
  • pKa: −3.15 ± 0.30 (predicted)
  • Solubility: Soluble in dichloromethane, THF; slightly soluble in water
  • Storage: 2–8°C, sealed, protect from light and moisture
  • GHS Classification: Warning; H315 (Causes skin irritation), H319 (Causes serious eye irritation), H335 (May cause respiratory irritation)
  • Hazard Symbols: Xi – Irritant
  • Risk Phrases: R36/37/38 (Irritating to eyes, respiratory system, and skin)
  • Safety Description: S26 (In case of contact with eyes, rinse immediately with plenty of water), S36 (Wear suitable protective clothing)
  • Transport Classification: Not classified as hazardous material for DOT/IATA transport

The compound’s reactivity is defined by its sequential nucleophilic aromatic substitution (SNAr) capability. The three chlorine atoms at the 2-, 4-, and 5-positions of the pyrimidine ring establish a distinct reactivity hierarchy: the C4 position is the most reactive, followed by C2, and then C5. This reactivity order enables selective, sequential substitution reactions, allowing chemists to introduce different substituents at each position with precise control. The compound is a versatile building block for the construction of tri-substituted pyrimidine scaffolds for kinase inhibitor research, including ALK and EGFR pathways. The reactivity of the three chlorine atoms can be modulated by varying reaction temperature, solvent, and base, enabling the synthesis of complex molecular architectures that would be difficult to access through alternative routes.

Major Market Participants

The global supply system for 2,4,5-trichloropyrimidine (CAS# 5750-76-5) features a pattern of “specialized pharmaceutical intermediate manufacturers, multinational research chemical distributors, and Chinese producers serving distinct market segments.” As a specialized halogenated pyrimidine building block rather than a bulk commodity, the market is characterized by a moderate number of suppliers catering to pharmaceutical R&D, agrochemical development, and research applications.

In the global research and high-purity segment, key international suppliers include Chem-Impex International, offering the compound at ≥98% (GC) purity under catalog number 44850, with a density of 1.61 g/mL, a boiling point of 96°C at 12 mmHg, and a refractive index of n20D 1.57. Merck KGaA (Sigma-Aldrich) offers the compound at 99% purity under product code 652032, with a density of 1.6001 g/mL at 25°C. Tokyo Chemical Industry (TCI) offers the compound under product code T1830. AK Scientific (AKSci) offers the compound at 98% (GC) purity under product code C770, with DOT/IATA classification as non-hazardous material. Apollo Scientific (UK) offers the compound under catalogue number OR8766. CymitQuimica (Biosynth brand) offers the compound at >98.0% (GC) purity under product code 3B-T2512, with pricing from €57.00 to €154.00. Santa Cruz Biotechnology offers the compound under CAS 5750-76-5. BenchChem offers the compound under catalog number B044654 with in-stock availability and custom synthesis options. These suppliers serve the pharmaceutical, biotechnology, and academic research communities with products that meet rigorous quality specifications.

In the industrial and large-scale production segment, Chinese manufacturers have emerged as significant players in the global supply chain. XinChem is a reliable manufacturer and supplier of high-purity 2,4,5-trichloropyrimidine from China, offering the compound with stringent quality standards for use in Ceritinib synthesis, ALK-5 inhibitor development, and agrochemical manufacturing. XinChem provides the compound as a colorless to pale yellow clear liquid with comprehensive quality documentation, batch-specific Certificates of Analysis (COA), customizable packaging, and globally compliant REACH, ISO 9001, and GMP-aligned manufacturing. The company emphasizes that 2,4,5-trichloropyrimidine is a key intermediate in the synthesis of Ceritinib and other targeted anti-cancer therapies, as well as a critical synthetic intermediate in the preparation of herbicides and pesticides. Other Chinese suppliers include Hubei Jianchu Biomedical Technology (湖北健楚生物医药有限公司), offering the compound at 99% purity under product code 5750-76-5 with pricing of 1 kg/10 RMB and 25 kg/50 RMB. Neiqiu County Huaxing Chemical (内丘县华兴化工有限公司), a company established in 2003 with a focus on pharmaceutical intermediates, offers the compound under CAS 5750-76-5. Jiangxi Ruiya Pharmaceutical (江西瑞雅药业有限公司) offers the compound at 99.78% purity in 30 kg packaging. Hubei Qianmo Biotechnology (湖北阡陌生物科技有限公司) offers the compound at competitive pricing. Shandong Mancanghong New Materials (山东满堂红新材料有限公司), Wuhan Yuqing Jiaheng Pharmaceutical (武汉裕清嘉衡药业有限公司), Shandong Chongcheng Energy Technology (山东崇成能源科技有限公司), Hubei Yiling Biotechnology (湖北一灵生物有限公司), and Jiangsu Pulesi Biotechnology (江苏普乐司生物科技有限公司) are also active suppliers. Chinese suppliers offer the compound at various purity grades (typically 98–99.78%) and packaging options—from grams to multi-kilogram quantities—serving both domestic and export markets.

Regional Market Dynamics

The global 2,4,5-trichloropyrimidine market exhibits distinct regional characteristics, with production concentrated in Asia-Pacific (particularly China) and consumption distributed across North America, Europe, and the Asia-Pacific region, aligned with the pharmaceutical, agrochemical, and specialty chemical industries in these regions. According to the 2,4,5-Trichloropyrimidine (CAS 5750-76-5) Market Research Report 2025, comprehensive data is available globally and regionally covering Europe, Asia, North America, and other regions, including market trends, producers, suppliers, prices, and consumers, with forecasts extending through 2029.

The Asia-Pacific region has emerged as a significant production hub for 2,4,5-trichloropyrimidine, with China hosting numerous manufacturers and suppliers including XinChem. The region’s competitive advantages include lower production costs, established chemical infrastructure, and proximity to rapidly growing pharmaceutical and agrochemical industries. Chinese suppliers offer the compound at various purity grades (typically 98–99.78%) and packaging options, serving both domestic and export markets. The growing pharmaceutical R&D, Ceritinib manufacturing, and agrochemical sectors in China, India, Japan, and South Korea continue to drive regional consumption growth. The compound is classified as a pharmaceutical intermediate and agrochemical intermediate in the Chinese market, with multiple suppliers offering the product in packaging sizes ranging from grams to 30 kg.

North America remains a key market for high-purity and research-grade 2,4,5-trichloropyrimidine, driven by demand from the pharmaceutical industry, biotechnology companies, and academic research institutions. The United States hosts numerous research organizations, pharmaceutical companies, and contract research organizations that require high-quality halogenated pyrimidine building blocks for Ceritinib manufacturing, ALK-5 inhibitor development, and kinase inhibitor drug discovery. Chem-Impex International, Sigma-Aldrich, AK Scientific, and Santa Cruz Biotechnology serve the North American market with extensive distribution networks. The region’s well-established regulatory framework, including FDA oversight of oncology drug manufacturing, supports demand for high-grade research chemicals and pharmaceutical intermediates.

Europe is characterized by stringent regulatory requirements, including REACH registration, and a strong focus on quality and sustainability in pharmaceutical and agrochemical applications. European pharmaceutical companies, agrochemical developers, and research institutions demand high-purity halogenated pyrimidine intermediates with comprehensive documentation. CymitQuimica (Biosynth brand) and Apollo Scientific (UK) serve the European market with in-stock availability. The region’s advanced pharmaceutical and biotechnology sectors support steady demand for high-quality Ceritinib intermediates and kinase inhibitor building blocks.

Japan represents a specialized market where 2,4,5-trichloropyrimidine is supplied by Tokyo Chemical Industry (TCI) and other distributors for pharmaceutical research, agrochemical development, and fine chemical applications.

Regulatory and Safety Considerations

As a halogenated heterocyclic intermediate with applications in pharmaceutical and agrochemical synthesis, 2,4,5-trichloropyrimidine (CAS# 5750-76-5) is subject to regulatory oversight in major global economies. Compliance with relevant regulations is essential for market access and trade.

GHS classification and handling: 2,4,5-Trichloropyrimidine is classified with the signal word “Warning” . Hazard statements include H315 (Causes skin irritation), H319 (Causes serious eye irritation), and H335 (May cause respiratory irritation). The compound is classified as Skin Irrit. 2, Eye Irrit. 2A, and STOT SE 3 (respiratory tract irritation). Precautionary statements include P261 (Avoid breathing mist or vapours), P264 (Wash skin thoroughly after handling), P271 (Use only outdoors or in a well-ventilated area), P280 (Wear protective gloves, eye protection, and face protection), P302+P352 (IF ON SKIN: Wash with plenty of water), P304+P340+P312 (IF INHALED: Remove person to fresh air and keep comfortable for breathing; call a POISON CENTER or doctor if you feel unwell), P305+P351+P338 (IF IN EYES: Rinse cautiously with water for several minutes; remove contact lenses if present and easy to do; continue rinsing), P332+P313 (If skin irritation occurs: Get medical advice/attention), P337+P313 (If eye irritation persists: Get medical advice/attention), P403+P233 (Store in a well-ventilated place; keep container tightly closed), P405 (Store locked up), and P501 (Dispose of contents/container to an approved waste disposal plant). The compound is classified as a combustible liquid (storage class 10). Personal protective equipment including chemical-resistant gloves, eye protection, and face protection should be worn during handling, and operations should be conducted in a well-ventilated environment or fume hood. The WGK Germany classification is 3 (high hazard to water).

Storage and stability: 2,4,5-Trichloropyrimidine should be stored at 2–8°C in a tightly sealed container protected from light and moisture. The compound is stable under recommended storage conditions but should be kept away from strong oxidizing agents and bases. Forms explosive mixtures with air on intense heating.

Regulatory compliance: In the European Union, the compound must comply with REACH registration requirements for import and use. The compound has an EINECS number of 227-286-8. Manufacturers and suppliers must provide comprehensive Safety Data Sheets (SDS) and maintain appropriate documentation. In the United States, 2,4,5-trichloropyrimidine is intended for research and development use only and is not intended for therapeutic, food, cosmetic, or consumer applications unless explicitly stated otherwise. For pharmaceutical intermediate applications, manufacturers must comply with relevant FDA regulations and quality standards. The compound is not classified as hazardous material for DOT/IATA transport purposes. The compound is not a controlled substance, is not an antibiotic, and is not DEA-regulated.

Transport information: 2,4,5-Trichloropyrimidine is not classified as hazardous material for DOT/IATA transport purposes under standard conditions. Proper packaging, labeling, and documentation are nevertheless required for international shipping. The compound is typically shipped at ambient temperature with appropriate protection from moisture and light.

Future Outlook

The market outlook for 2,4,5-trichloropyrimidine is positive, supported by several key growth drivers across its major application segments. While the compound remains a relatively specialized halogenated pyrimidine building block, its essential role in Ceritinib synthesis and its utility in ALK-5 inhibitor and agrochemical development position it for steady growth in the coming years.

Key growth drivers include:

  1. Expansion of the Ceritinib and ALK inhibitor market: The continued global demand for Ceritinib (LDK378, Zykadia®)—a second-generation ALK inhibitor for ALK-positive metastatic NSCLC—drives demand for the key intermediate 2,4,5-trichloropyrimidine. The synthesis of Ceritinib relies on the regioselective nucleophilic aromatic substitution of 2,4,5-trichloropyrimidine with 2-(isopropylsulfonyl)aniline, making this compound the essential starting material for the drug’s pyrimidine fragment. Rising lung cancer incidence and expanding access to targeted therapies in developing countries support sustained demand.
  2. Growth in kinase inhibitor R&D: The increasing emphasis on kinase inhibitor discovery, particularly in oncology, drives demand for regioselective trichlorinated pyrimidine building blocks for constructing ALK-5, EGFR, and other kinase-targeted inhibitor libraries. The compound’s unique 2,4,5-trichloro substitution pattern enables sequential, orthogonal functionalization for the construction of complex drug-like molecules.
  3. Expansion of agrochemical development: The growing global demand for novel herbicides and pesticides—driven by increasing food production needs and the development of more selective, environmentally friendly crop protection agents—supports consumption of 2,4,5-trichloropyrimidine as a key intermediate for agrochemical active ingredients. The compound has demonstrated fungicidal and sporicidal properties, and its derivatives are explored for herbicidal and pesticidal activities.
  4. Growth in reactive dyes and specialty chemicals: The expanding market for reactive dyes for textile industries creates additional opportunities for the compound as a precursor for 2,4,6-trichloropyrimidine-5-carbaldehyde and other dye intermediates.
  5. Increasing focus on continuous flow chemistry: The development of continuous flow technology for hazardous reactions and multi-ton production of pyrimidine derivatives supports efficient, scalable manufacturing of 2,4,5-trichloropyrimidine for pharmaceutical and agrochemical applications.

Challenges and considerations:

  • Regulatory compliance: Increasingly stringent pharmaceutical and chemical regulations may require ongoing investment in quality systems and documentation.
  • Limited scale: As a specialized halogenated pyrimidine intermediate, the market for 2,4,5-trichloropyrimidine is smaller than that of commodity chemicals.
  • Competition from alternative building blocks: The market faces competition from other trichlorinated pyrimidines and halogenated heterocyclic intermediates with similar reactivity profiles.
  • Handling requirements: The compound’s classification as an irritant (H315, H319, H335) requires appropriate safety measures during handling and storage. Forms explosive mixtures with air on intense heating.

To succeed in this evolving market landscape, suppliers must focus on product quality (particularly purity and batch-to-batch consistency), supply chain reliability, regulatory compliance, and responsive customer service. Companies that can offer high-purity products, flexible packaging options, and technical support for pharmaceutical, agrochemical, and specialty chemical applications will be well-positioned to capture growing demand.


Shanghai XinChem Co., Ltd. (XinChem)

As a world-leading supplier of organic chemicals and heterocyclic building blocks, Shanghai XinChem Co., Ltd. (XinChem) is dedicated to meeting the innovative needs of the pharmaceutical, agrochemical, and fine chemical industries. Leveraging extensive experience and advanced manufacturing capabilities, XinChem provides high-quality 2,4,5-Trichloropyrimidine (CAS# 5750-76-5) to customers worldwide. As a trusted manufacturer and supplier based in China, XinChem combines competitive pricing, reliable supply, and exceptional service to establish itself as a preferred partner for pharmaceutical companies, agrochemical developers, and research institutions seeking this versatile regioselective trichlorinated pyrimidine building block.

1. Technical Advantages

Advanced Synthesis and Purification Processes
XinChem utilizes state-of-the-art manufacturing facilities and rigorous quality control measures to ensure the purity, consistency, and safety of its 2,4,5-trichloropyrimidine products. The production process incorporates established synthetic routes—including the reaction of 2-cyanoethyl isocyanate dichloride with hydrogen chloride followed by reaction with chlorine—enabling the delivery of products with purity ≥98% (GC) and ≥99% (GC) to meet diverse application requirements. Strict process control ensures consistent product quality, minimal impurities, and batch-to-batch reproducibility, providing customers with reliable performance in Ceritinib synthesis, ALK-5 inhibitor development, and agrochemical manufacturing.

Full-Chain Quality Control
The production process strictly adheres to international quality standards, with comprehensive quality control covering raw material sourcing, in-process monitoring, and finished product testing. Each batch is accompanied by a detailed Certificate of Analysis (COA) documenting physical and chemical properties, purity data (GC), density, refractive index, boiling point, and impurity profiles. XinChem offers batch-specific COA, customizable packaging, and globally compliant REACH, ISO 9001, and GMP-aligned manufacturing.

2. Product Advantages

High Purity and Consistent Quality
XinChem offers 2,4,5-trichloropyrimidine with purity ≥98% (GC) and ≥99% (GC) available, ensuring optimal performance in Ceritinib synthesis, ALK-5 inhibitor development, and agrochemical applications. The product’s high purity minimizes the risk of unwanted side reactions and impurities, making it suitable for demanding applications in targeted cancer therapy manufacturing and kinase inhibitor drug discovery. The compound is supplied as a colorless to pale yellow clear liquid with consistent appearance and defined density and refractive index specifications.

Comprehensive Specifications
Key specifications include:

  • Molecular Formula: C₄HCl₃N₂
  • Molecular Weight: 183.42 g/mol
  • CAS Number: 5750-76-5
  • EINECS Number: 227-286-8
  • Synonyms: 2,4,5-Trichloro-1,3-diazine; 2,5,6-Trichloropyrimidine; 5-Chloro-2,4-dichloropyrimidine
  • MDL Number: MFCD03788200
  • Appearance: Colorless to pale yellow clear liquid
  • Purity: ≥98% (GC) / ≥99% (GC) available
  • Density: 1.6001 g/mL at 25°C
  • Boiling Point: 84°C at 1 mmHg; 96°C at 12 mmHg
  • Refractive Index: n20D 1.574
  • Flash Point: >110°C
  • Solubility: Soluble in dichloromethane, THF; slightly soluble in water
  • Storage: 2–8°C, sealed, protect from light and moisture
  • GHS Classification: Warning; H315, H319, H335
  • Hazard Symbols: Xi – Irritant
  • Risk Phrases: R36/37/38
  • Safety Description: S26, S36

Flexible Packaging Solutions
XinChem provides a range of packaging options to accommodate diverse customer needs, from laboratory-scale quantities (1 g, 5 g, 10 g, 25 g) to industrial-scale packaging (100 g, 500 g, 1 kg, 5 kg, 25 kg, 30 kg) and bulk shipments. Customized packaging solutions are available upon request, ensuring safe handling, storage, and transportation with appropriate protection from light and moisture.

3. Application Fields

As a regioselective trichlorinated pyrimidine building block, 2,4,5-Trichloropyrimidine (CAS# 5750-76-5) exhibits wide application value across multiple industries:

Pharmaceutical Synthesis and API Manufacturing:

  • Essential starting material for Ceritinib (LDK378, Zykadia®), a second-generation ALK inhibitor for ALK-positive metastatic NSCLC
  • Key pyrimidine fragment for 2,5-dichloro-N-(2-(isopropylsulfonyl)phenyl)pyrimidin-4-amine synthesis
  • Building block for potent and selective ALK-5 inhibitors and EGFR inhibitors
  • Intermediate for kinase inhibitor research and targeted cancer therapy development
  • Precursor for antiviral and antibacterial agents

Agrochemical Development:

  • Key intermediate for the synthesis of herbicides and pesticides
  • Building block for agrochemical actives with fungicidal and sporicidal properties
  • Precursor for crop protection agents with improved efficacy and environmental profiles

Reactive Dyes and Specialty Chemicals:

  • Intermediate for the synthesis of reactive dyes for textile industries
  • Precursor for 2,4,6-trichloropyrimidine-5-carbaldehyde and other dye intermediates
  • Synthetic raw material for new antibacterial and anti-inflammatory pharmaceuticals

Analytical Chemistry and Research Applications:

  • Reagent for analytical methods for detection and quantification of chemical substances
  • Tool for biochemical research on enzyme inhibition and metabolic pathways

4. Service Support

Technical Expertise and Customized Solutions
XinChem’s team of experienced chemists and application engineers provides full technical support throughout the customer journey—from product selection and specification development to application guidance and troubleshooting. Whether customers require optimization of regioselective substitution conditions for Ceritinib synthesis, guidance on process chemistry improvements, or assistance with regulatory documentation, XinChem’s technical experts are ready to help. Custom synthesis and contract manufacturing with flexible scaling from R&D to commercial quantities are available upon request.

Global Logistics and Reliable Supply
With established supply chains serving markets across Europe, North America, Asia-Pacific, and beyond, XinChem ensures timely delivery and consistent product availability. The company’s logistics team manages all aspects of international shipping, including customs clearance and documentation, with appropriate temperature control (2–8°C) and moisture protection for product stability.

Regulatory Support
XinChem provides comprehensive documentation to support regulatory compliance, including Safety Data Sheets (SDS), Certificates of Analysis (COA), and other required certificates. The company stays current with evolving regulatory requirements in major markets, including REACH, TSCA, and other regional regulations, helping customers navigate the complexities of global trade.

5. Reasons to Choose XinChem

  • Professionalism: Extensive experience and deep expertise in halogenated heterocyclic building block synthesis and supply.
  • Quality: Rigorous quality control, high purity (≥98% to ≥99%), and adherence to international standards.
  • Reliability: Stable supply, competitive pricing, and timely delivery.
  • Flexibility: Customized solutions to meet diverse customer needs, including custom synthesis and packaging.
  • Service: Responsive technical support and comprehensive documentation including batch-specific COA.

Contact us today to start your partnership with XinChem!

Website: www.xinchem.com

Email: sales1@xinchem.com

WhatsApp: +86 18049800532


Post time: Oct-07-2026