BAM15 is supplied by Rexar as a research-grade chemical reference material for analytical chemistry, compound identification and comparative laboratory workflows. BAM15 is a fluorinated heteroaromatic compound with a fused oxadiazolo-pyrazine core and two fluorophenyl-substituted amino groups. Its distinctive combination of nitrogen-rich heterocyclic functionality, fluorinated aromatic rings and a central oxygen-containing fused ring system provides multiple structural features suitable for chromatographic, mass-spectrometric and spectroscopic characterisation.
Research-grade material distributed by Rexar within the European Union.
BAM15 (CAS 210302-17-3) is supplied in sealed laboratory packaging to support traceability, storage integrity and laboratory handling procedures.
Rexar Technical Compound Datasheet (PDF)
Molecular structure data and selected physicochemical properties can be consulted via: BAM15 on PubChem
BAM15 is an organic heterocyclic compound with the molecular formula C16H10F2N6O and a molecular weight of approximately 340.3 g/mol. Its molecular architecture contains a fused nitrogen- and oxygen-containing heterocyclic core substituted with two fluorophenyl-associated amino groups.
The structure contains six nitrogen atoms, two fluorine atoms and one oxygen atom distributed across chemically distinct heterocyclic and aromatic environments. This combination provides multiple analytical markers suitable for chromatographic, mass-spectrometric and spectroscopic characterisation.
A defining structural feature of BAM15 is its fused oxadiazolo-pyrazine ring system. This compact heterobicyclic core contains multiple nitrogen atoms together with an oxygen-containing five-membered ring.
The nitrogen-rich fused ring architecture creates a chemically distinctive central region that can provide characteristic mass-spectrometric, NMR and spectroscopic features during comparative compound identification.
BAM15 contains two fluorinated phenyl rings attached through nitrogen-containing substituents to the central heterocyclic framework.
The two aromatic rings provide characteristic proton and carbon environments, while the fluorine substituents introduce additional analytical features that may be evaluated by appropriate spectroscopic techniques.
The molecular formula C16H10F2N6O reflects a compact aromatic and heteroaromatic structure containing carbon, hydrogen, fluorine, nitrogen and oxygen.
The combination of fluorinated aromatic regions and a nitrogen-rich fused heterocycle provides several structural markers for comparative analytical identification.
BAM15 contains six nitrogen atoms distributed across the central heterocyclic framework and nitrogen-linked substituent environments.
These chemically distinct nitrogen environments contribute substantially to the electronic and spectroscopic characteristics of the molecule and may influence ionisation behaviour under mass-spectrometric conditions.
Two fluorine atoms are incorporated into the aromatic regions of BAM15. Fluorinated aromatic substitution provides a distinctive elemental feature that can assist structural verification.
The presence of fluorine may also provide additional opportunities for comparative spectroscopic analysis using analytical techniques capable of evaluating fluorinated organic compounds.
BAM15 contains two phenyl rings positioned on opposite sides of the central heterocyclic framework. These aromatic regions provide multiple proton and carbon environments suitable for spectroscopic comparison.
The aromatic components also contribute to ultraviolet absorption and may influence chromatographic retention under reversed-phase conditions.
The BAM15 molecule contains six nitrogen atoms, two fluorine atoms and one oxygen atom. These heteroatoms occupy several chemically distinct environments within the fused central ring system and its substituents.
The distribution of heteroatoms contributes to molecular polarity, electronic characteristics, ionisation behaviour and spectroscopic properties.
The molecular architecture of BAM15 contains two structurally related fluorophenyl-associated substituent regions arranged around a compact central heterocyclic framework.
This organisation produces repeated aromatic structural motifs while retaining chemically distinctive heterocyclic environments in the central portion of the molecule.
BAM15 combines a nitrogen-rich heterocyclic centre with two fluorinated aromatic regions. The heteroatom-containing core contributes polar character, while the phenyl rings provide substantial aromatic surface area.
This structural balance may influence solvent compatibility, sample preparation and chromatographic retention behaviour.
The fused heterocyclic core and phenyl rings provide relatively rigid structural regions. Rotational flexibility is primarily associated with the bonds connecting the aromatic substituent regions to the central framework.
This combination of rigid aromatic and heterocyclic components may produce characteristic solution-state and chromatographic behaviour.
Under reversed-phase liquid chromatographic conditions, BAM15 retention may be influenced by its two aromatic rings, fluorine substitution, heterocyclic nitrogen atoms and overall balance between aromatic and polar structural regions.
Retention time and peak shape may vary according to mobile-phase composition, gradient conditions, stationary-phase chemistry, temperature, pH and sample concentration.
LC-based methods may be used for qualitative identity comparison, purity profiling and retention-time verification of BAM15 reference material.
The combination of fluorinated aromatic rings and a compact heteroatom-rich core may require optimisation of mobile-phase composition and stationary-phase chemistry for suitable retention and peak symmetry.
With a molecular weight of approximately 340.3 g/mol, BAM15 falls within a mass range suitable for routine LC-MS analysis. Appropriate ionisation conditions may support detection of molecular or adduct-associated species depending on solvent composition and instrument parameters.
Fragmentation behaviour may involve the fluorophenyl-associated substituent regions or the heterocyclic framework and may support structural confirmation when compared with authenticated reference data.
Proton NMR analysis may show characteristic resonances associated with the two fluorinated aromatic ring systems and nitrogen-associated proton environments.
Carbon NMR analysis may provide distinguishable signals corresponding to aromatic carbons and the carbon environments within the heterocyclic framework. Fluorine-containing aromatic substitution may additionally influence neighbouring carbon and proton resonances.
The presence of two fluorine atoms provides an additional structural feature that may be examined using fluorine-sensitive NMR methods where appropriate.
Fluorine-associated resonances can provide complementary information during structural verification and comparison with authenticated reference material.
Infrared analysis may reveal absorption features associated with aromatic C-H environments, nitrogen-containing heterocyclic functionality and carbon-fluorine bonds.
Comparative infrared spectra may therefore provide supplementary structural information when evaluated alongside chromatographic, mass-spectrometric and NMR data.
The aromatic and heteroaromatic systems of BAM15 may support ultraviolet-based chromatographic detection. Suitable detection wavelengths should be selected according to measured absorbance characteristics and validated laboratory methods.
The conjugated aromatic regions are expected to contribute substantially to the electronic absorption profile of the compound.
The two fluorinated phenyl groups represent prominent structural features within BAM15. Fluorine substitution alters the electronic environment of the aromatic rings and provides a distinctive marker for analytical identification.
These regions can contribute to characteristic mass-spectrometric fragmentation, NMR behaviour and chromatographic properties.
The central heterobicyclic system of BAM15 combines nitrogen- and oxygen-containing ring environments within a compact fused architecture.
This fused ring arrangement provides a structurally distinctive core that differentiates BAM15 from simpler diaryl or monocyclic aromatic compounds.
BAM15 is supplied as a laboratory solid. Solid-state characteristics such as crystallinity, particle morphology, residual moisture and residual solvent content may depend on manufacturing and purification procedures.
Analytical laboratories may use thermal behaviour, powder analysis or spectroscopic comparison as supplementary identity indicators where appropriate.
BAM15 may serve as a qualitative reference compound in structural verification and comparative analytical workflows involving LC-MS, HPLC, NMR and infrared spectroscopy. Laboratory procedures may include retention-time comparison, molecular-weight confirmation and comparative spectral profiling.
BAM15 can be structurally classified as a fluorinated nitrogen-rich heterocyclic organic compound containing two aromatic phenyl regions and a fused oxadiazolo-pyrazine core.
Its molecular framework provides a distinctive combination of fluorinated aromatic and heteroaromatic structural features for comparative analytical workflows involving related reference materials.
Each aromatic region contains a fluorine substituent and is connected through a nitrogen-containing linkage to the central heterocyclic framework.
This substitution pattern creates multiple chemically distinguishable aromatic environments that can assist structural verification using NMR, mass spectrometry and related analytical techniques.
The central portion of BAM15 consists of a fused heterocyclic framework containing multiple nitrogen atoms and one oxygen atom.
This connectivity produces characteristic heteroaromatic environments that may be evaluated using chromatographic and spectroscopic analytical methods.
The multiple nitrogen-containing environments within BAM15 may influence ionisation behaviour under different analytical conditions. Protonation and adduct formation may depend on solvent composition, mobile-phase additives and ionisation parameters.
Instrument settings and sample-preparation conditions should therefore be optimised according to validated laboratory procedures.
The molecular formula C16H10F2N6O contains six nitrogen atoms, two fluorine atoms and one oxygen atom distributed across the central heterocyclic framework and fluorinated aromatic substituent regions.
The theoretical elemental composition can support identity verification when combined with accurate-mass spectrometry and spectroscopic analysis.
As a chemical reference material, BAM15 may be used for qualitative structural comparison, method development and analytical identity verification in laboratories examining fluorinated aromatic compounds, nitrogen-rich heterocycles or structurally related reference materials.
Analytical reproducibility depends on consistent sample preparation, validated instrument parameters, suitable reference documentation and controlled storage conditions.
Each unit is supplied in sealed laboratory packaging designed to support material integrity during storage and transport. Batch identification labelling supports traceability and internal documentation within controlled research environments.
Packaging should remain closed when the material is not in use and should be protected from moisture, excessive heat and direct light.
What is the CAS number of BAM15?
The CAS number is 210302-17-3.
What is the PubChem CID of BAM15?
The PubChem compound identifier is 565708.
What is the molecular formula of BAM15?
The molecular formula is C16H10F2N6O.
What is the molecular weight of BAM15?
The molecular weight is approximately 340.3 g/mol.
Does BAM15 contain fluorine?
Yes. The molecular structure contains two fluorine atoms associated with its aromatic regions.
How many nitrogen atoms does BAM15 contain?
The molecular structure contains six nitrogen atoms.
How many oxygen atoms does BAM15 contain?
The molecular structure contains one oxygen atom.
What structural class does BAM15 belong to?
BAM15 is a fluorinated heterocyclic compound containing a nitrogen-rich fused ring system and two fluorinated aromatic regions.
In which form is BAM15 supplied?
It is supplied as a laboratory solid in sealed packaging.
Is this product intended for human or animal use?
No. This material is supplied exclusively as a laboratory reference compound.
Disclaimer:
This product is supplied exclusively as a chemical reference material for laboratory and analytical purposes. Not for human or animal consumption. Not intended for food, supplement, cosmetic, medical, diagnostic or therapeutic use.
| Intended use: | Laboratory research and analytical reference purposes only |
| Application area: | Analytical chemistry, reference comparison and method development |
| End user: | Professional users in controlled research environments |
| Regulatory classification: | Chemical reference material |