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M-140 / M-140-1ML updated item number format

Methylone HCl

1.0 mg/mL (as free base) in Methanol |

Certified Reference Material

A synthetic stimulant of the amphetamine and cathinone classes also known as bk-MDMA or 3,4-methylenedioxy-N-methylcathinone. Significant abuse of this designer drug has been reported in the UK, Netherlands, Sweden, and New Zealand.
   
Concentration: 1.0 mg/mL (as free base)
Solvent: Methanol
Unit Size: 1 mL/ampoule
CAS Number:

186028-80-8

Chemical Formula:

C11H13NO3 · HCl

Molecular Weight:

243.69

Certificate of Analysis:
US List Price:
$223.00 EA
Qty:


C-155 / C-155-1ML    (±)-Cathinone-D5 HCl, 100 μg/mL (as free base)  
   $155.00      
E-091 / E-091-1ML    Eutylone-D5 HCl, 100 µg/mL (as free base)  
   $205.00      
M-141 / M-141-1ML    Methylone-D3 HCl, 100 μg/mL (as free base)  
   $278.00      
P-086 / P-086-1ML    Pentylone HCl, 1.0 mg/mL (as free base)  
   $138.00      
P-087 / P-087-1ML    Pentedrone HCl, 1.0 mg/mL (as free base)  
   $149.00      
P-102 / P-102-1ML    Pentylone-D3 HCl, 100 µg/mL (as free base)  
   $187.00      

Regulatory Control
▶  USDEA exempt chemical preparation - no USDEA registration or paperwork required
▶  Canada Test Kit Registration # 61-1333 - no Health Canada import authorization required
read more about ordering regulated substances

Recommended Storage Condition
Freeze

UN Number, Class, PG
1230, 3, II

Safety Data Sheet

HS Code
3822.90.0000

▶  Analysis of "Bath Salt" Compounds from Urine for Forensic Toxicology Using µElution Mixed-mode SPE Combined with UPLC/MS/MS Detection | Jonathan P. Danaceau, Erin E. Chambers, and Kenneth J. Fountain, Waters, 2013
▶  Analytical Challenges with MS Analysis of Bath Salts and Spice Cannabinoid Metabolites | Joshua Cooper, Ryan Carrell, Ning Chang, Yunming Ying, Greg Kirkovits, Derrell Johnson, Isil Dilek, Uma Sreenivasan, Cerilliant, 2012
▶  Application of Bio-SPME for the Enrichment of Illicit Phenethylamine and Cathinone Compounds from Biological Compounds | Craig R. Aurand, Robert Shirey, Leonard Sidisky, Janusz Pawliszyn, and Yong Chen, Supelco, 2012
▶  Evaluation of LCMSMS Deuterium Scrambling in Clinically Significant Small Molecules | Joshua Cooper, Isil Dilek, and Uma Sreenivasan, Cerilliant, 2012
▶  Improved GCMS Derivatization Techniques for Analysis of New Designer Drugs: Methylone, Ethylone, Butylone, Mephedrone, and Methedrone | Ryan Carrell , Isil Dilek, Ning Chang, Uma Sreenivasan, Yunming Ying, Greg Kirkovits, Cerilliant, 2011
▶  LC-MS Analysis of Illicit Bath Salts in Urine | Supelco, 2012
▶  LC-MS Analysis of Illicit Phenethylamine and Cathinone “Bath Salts” in Plasma on Ascentis® Express HILIC after Extraction using SPME LC Tips | Sigma-Aldrich®, 2014
▶  LC/MS (TOF) Analysis of Illicit Bath Salts in Urine on Ascentis® Express 2.7 µm HILIC after Solid Phase Extraction (SPE) using Supel™-Select SCX | Sigma-Aldrich®, 2014
▶  LC/MS (TOF) Analysis of Illicit Bath Salts on Ascentis® Express 2.7 µm HILIC | Sigma-Aldrich®, 2014
▶  LC/MS Analysis of Illicit Bath Salts on Ascentis® Express 2.7 µm HILIC, Fast Analysis | Sigma-Aldrich®, 2014
▶  LC/MS Analysis of Illicit Bath Salts on Ascentis® Express HILIC, Set 4 | Sigma-Aldrich®, 2015
▶  Sensitive hydrophilic interaction liquid chromatography/tandem mass spectrometry method for rapid detection, quantification and confirmation of cathinone-derived designer drugs for doping control in equine plasma | Xiaoqing Li, Cornelius E. Uboh, Lawrence R. Soma, Ying Liu, Fuyu Guan, Craig R. Aurand, David S. Bell, Youwen You, Jinwen Chen and George A. Maylin, http://onlinelibrary.wiley.com/doi/10.1002/rcm.6778/abstract, 2013
▶  Two Distinct Sample Prep Approaches to Overcome Matrix Effect in LC/MS of Serum or Plasma Samples | Sigma-Aldrich, 2015
▶  Ultrafast Screen for Bath Salts in Urine Using the Agilent RapidFire High-Throughput Mass Spectrometry System | Nikunj R. Parikh, Michelle Romm, and Vaughn P. Miller, Agilent Technologies, Inc., 2013


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