Formulation: A 1 mg/ml solution in methanol
Pricing updated 2018-12-14. Prices are subject to change without notice.
Furanyl fentanyl (hydrochloride) (Item No. 19633) is a certified reference material that is structurally categorized as an opioid. It demonstrates an ED50 value of 0.2 mg/kg in a mouse hot plate analgesia test.1 This compound has been sold as a designer drug. It is intended for forensic and research applications.
Cayman Chemical products containing Certified Reference Material (CRM) in the name are highly qualified materials manufactured and tested to meet ISO/IEC 17025 and ISO Guide 34 international guidelines for reference materials. These materials are tested using validated analytical methods on qualified instrumentation to ensure traceability to SI units of measure. Cayman’s CRMs are tested for Homogeneity and Stability and are provided with a certificate stating the CRM property value(s) along with the combined uncertainty of the property value(s). These materials are intended for quantitative applications where quantitative accuracy and uncertainty are critical. Cayman Chemical is committed to providing quality products to its customers as evidenced by its accreditation to the ISO/IEC 17025 and ISO Guide 34 standards. All traceable CRMs may be distinguished by their CofAs and can be downloaded below using the batch number located on the product label. For a representative CofA please contact our technical support.
Warning - this product is not for human or veterinary use.
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View the Cayman Structure Database for chemical structure definitions for many Cayman products
View the Cayman Spectral Library (CSL) for ChemStation-searchable GC-MS spectra of many of Cayman's emerging forensic drug standards
Provide batch numbers separated by commas to download or request available product inserts, QC sheets, certificates of analysis, data pack, and GC-MS data.
Huang, B.S., Terrell, R.C., Deutsche, K.H., et al. N-
Watanabe, S., Vikingsson, S., Roman, M., et al. In vitro and in vivo metabolite identification studies for the new synthetic opioids acetylfentanyl, acrylfentanyl, furanylfentanyl, and 4-