m32bICT , CAS No.1260031-39-7

CAS: 1260031-39-7 Cat. No.: M1504812
Disponible para pedir
Storage
Room temperature
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Size
USA
Alemania (EU)*
Price
Qty
100mg
M1504812-100mg
Fabricado bajo pedido · 8–12 semanas
1.333,90US$
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Why this grade

for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Room temperature Ships Check lot-specific COA for exact specifications.

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Quality documents

SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.

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Literature proof

Cited in 0 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Specifications

Condiciones de almacenamiento de almacenamiento
Room temperature

Documentation

📋 Safety Data Sheet (SDS)

Comprehensive hazard, handling, storage, and regulatory compliance document.

Download SDS →

✅ Certificate of Analysis (COA)

Lot-specific quality data. Enter your lot number to retrieve the exact COA.

Look up COA →

📊 Datasheet

Quick-reference summary of product specifications and applications.

View datasheet →

🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Certificados (CoA, COO, BSE/TSE y tabla de análisis)
C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:
Calculadoras de soluciones
Reseñas

Reseñas de cliente

Application Protocols

No validated application protocols are provided for m32bICT in the product data.

General protocol templates (adapt as appropriate; not item-specific):

  • Solution preparation for film deposition: Weigh required mass quickly to minimize environmental exposure. Dissolve at 5–20 mg/mL in screened solvent, warm to 60–100 °C with stirring, then filter through a 0.2 µm PTFE syringe filter before coating.
  • Spin-coating (example framework): 500 rpm, 10 s spread; 1500–2500 rpm, 30–60 s spin. Post-bake 80–150 °C for 10–30 min if thermally stable.
  • Inkjet printing (example framework): Viscosity 5–15 mPa·s; surface tension 25–40 mN/m (tune with co-solvents). Filter 0.2 µm; degas ink.

These are generic templates intended to aid experimental planning. Final parameters should be established by small-scale optimization once the specific physical properties of m32bICT are confirmed from the CoA.

Biological Roles

This product is listed under Materials Science and is intended for research use only. No biological function, pathway involvement, or biochemical role is provided or implied for m32bICT.

  • If this material were to be studied in a biointerface or biosensor context, consult appropriate biosafety guidance and confirm all composition-related hazards from the SDS before any contact with biological systems.
  • There are no item-specific data on biocompatibility, cytotoxicity, or biodegradability in the product record.

Conclusion: Biological roles are not typically applicable to this product category. Focus on materials characterization and device/process-relevant properties as described in other sections.

Buffer Applications

Buffer preparation and pH control are not typically applicable for materials-science solids or thin-film precursors unless the material is designed for aqueous processing (not specified here).

  • No pKa or aqueous solubility data are provided for m32bICT; therefore, no buffer systems can be recommended.
  • If aqueous dispersion is desired, consider general surfactant-assisted or polymer-stabilized dispersions (e.g., SDS, PSS, PEDOT:PSS) only after verifying compatibility and safety; this is general guidance and not specific to m32bICT.

Please consult the CoA for any guidance on water compatibility before attempting aqueous formulations.

Green Alternatives

Without item-specific solvent or process requirements, green choices should be selected based on performance screening and EH&S priorities.

General greener strategies (literature/general):

  • Solvent substitution hierarchy: Prefer esters (EtOAc), alcohols (IPA, EtOH), ketones (MEK, cyclopentanone), and ethers like CPME over chlorinated aromatics where feasible. Validate film quality and performance before full substitution.
  • Process intensification: Use high-solids inks and slot-die/blade coating to minimize solvent use; recover solvents via closed-loop systems.
  • Energy reduction: Lower-temperature drying using mixed-solvent systems with tuned vapor pressure; consider IR heating or nitrogen knife to shorten bake times.
  • Waste minimization: Scale solubility screens microgram-to-milligram; use DoE to reduce the number of runs.

Illustrative comparison (general, not specific to m32bICT):

  • Chlorobenzene vs. Ethyl acetate
    • Toxicity: higher vs. lower
    • Boiling point: 132 °C vs. 77 °C (affects film formation/anneal)
    • Solvency for conjugated organics: strong vs. moderate

Trade-offs:

  • Greener solvents may reduce solubility or alter morphology; performance parity must be demonstrated empirically.

Always confirm chemical compatibility with m32bICT from the CoA and small-scale trials before adopting substitutions.

Pharmaceutical Uses

This product is not described as a pharmaceutical excipient and is provided for research use only. No pharmacopeial status, monographs, or formulation roles are specified.

  • There are no item-specific data regarding use in drug product manufacturing, coatings, or analytical reference standards.
  • Do not use in clinical, diagnostic, or therapeutic applications.

If your laboratory intends to evaluate the material for non-clinical formulation research (e.g., as a model film former or barrier layer), ensure thorough toxicological and extractables/leachables assessment. Such uses would be exploratory and are outside the scope of this catalog entry.

Physical Properties

Item-specific physical constants are not provided in the product data.

  • Appearance: Not specified for this item; refer to CoA/Spec Sheet.
  • Melting point / Boiling point: Not specified for this item; refer to CoA/Spec Sheet.
  • Density: Not specified for this item; refer to CoA/Spec Sheet.
  • Solubility profile: Not specified for this item; refer to CoA/Spec Sheet.
  • logP / pKa / refractive index: Not specified for this item; refer to CoA/Spec Sheet.

General guidance for materials-oriented organics (literature/general):

  • Conjugated organic materials often exhibit solubility in chlorinated aromatics (e.g., chlorobenzene, o-dichlorobenzene) and high-boiling polar aprotic solvents (DMF, DMSO, NMP). Solubility can be enhanced by gentle heating (50–100 °C) and sonication.
  • Film formation properties (glass transition Tg, thermal stability Td) are key for device work; these values are material-specific and should be confirmed from the CoA or DSC/TGA measurement.

Practical screening (general):

  • Start with a micro-scale solubility screen at room temperature and 60–80 °C in: toluene, chlorobenzene, o-DCB, THF, acetone, MeCN, DMF, DMSO.
  • If the material is polymeric/oligomeric, viscosity and gelation should be assessed across concentration (1–20 mg/mL) before spin-coating or casting.

Note: Treat all non-specified parameters as unknown until verified experimentally or via the product’s CoA.

Quality and Grades

Item-specific quality attributes are not provided.

  • Grade/Purity: Not specified for this item; refer to CoA/Spec Sheet.
  • Stabilizers/Inhibitors: Not specified for this item; refer to CoA/Spec Sheet.

Guidance on typical quality markers for materials-science reagents (general):

  • For small-molecule semiconductors/dopants, HPLC/GC purity and metal impurity levels (ICP-MS) can impact charge transport and device stability.
  • For polymers/oligomers, Mn/Mw (GPC/SEC), Đ (polydispersity), and residual catalyst content are critical. Spectral identity (1H/13C NMR, HRMS, FTIR) and thermal analysis (TGA/DSC) are standard inclusions.
  • Optical-grade materials may specify UV–vis cutoff, photoluminescence quantum yield, and optical clarity; these are not specified for this item and should be confirmed if relevant.

Interpretation tips:

  • “Electronic grade” or “device grade” (if stated on a CoA) typically implies low ionic/metal contamination and batch-to-batch reproducibility. Absent explicit grade, verify suitability with a small pilot experiment.

Recommendation:

  • Request the CoA and Specification Sheet for this lot of m32bICT to confirm purity thresholds, residual solvents, and any stabilizers prior to sensitive device fabrication.
Reaction and Applications

Manufacturer application details are not provided for m32bICT. Listed category suggests use in materials science; however, specific reactivity or device role is not disclosed.

General materials-science application pathways (context, not specific to this item):

  • Solution processing: preparation of inks (1–30 mg/mL), filtration (0.2 µm PTFE), and deposition via spin-coating, blade coating, or inkjet printing, followed by thermal/solvent annealing to optimize morphology.
  • Thin-film characterization: UV–vis absorption, PL, AFM, profilometry, and four-point probe to assess optical/electrical properties of resulting films.
  • Device prototyping: If applicable, incorporate into test stacks (e.g., transport layers, interlayers, sensing films) with proper controls; measure IV curves, impedance, or stability per relevant standards.

If m32bICT is intended as a synthetic intermediate (unknown):

  • Establish purity confirmation (NMR, LC-MS) before transformations. Map plausible functional group reactivity and protection strategy once the structure is known.

Because no reaction families, catalysts, or device roles are specified for this product, please consult the CoA/technical note for validated applications and recommended conditions before scale-up or device fabrication.

Reaction Conditions

No reaction conditions are specified for m32bICT. If the material is to be used in synthesis or processing, conditions must be established empirically.

General guidance (context, not item-specific):

  • Solution-phase reactions: Choose solvent based on solubility screen; maintain inert atmosphere (N2/Ar) if the compound is air/moisture sensitive (unknown—verify via SDS/CoA). Typical temperatures: 0–120 °C depending on solvent and reaction.
  • Thin-film processing: Spin speeds 500–3000 rpm, bake/anneal 80–200 °C depending on thermal stability (Td/Tg not provided). Employ staged ramps to avoid film cracking.
  • Purification: Chromatography on silica/alumina (monitor for adsorption issues), or recrystallization from appropriate solvent pairs; for polymers, use Soxhlet extraction sequences (MeOH/hexanes/CHCl3) as applicable.

Quality checkpoints:

  • Record viscosity, concentration, and filtration steps for reproducibility.
  • Confirm absence of particulates (>0.2 µm) before device deposition.

All temperatures, times, and atmospheres must be validated on small scale, as the specific stability/reactivity of m32bICT are not disclosed.

Safety and Handling

Safety data are not supplied in the product record and should be taken from the SDS.

  • GHS classification: Not specified for this item; refer to SDS.
  • Signal word / H-Statements / Pictograms: Not specified for this item; refer to SDS.

General laboratory precautions (good practice):

  • Handle in a well-ventilated fume hood; avoid inhalation of dusts/aerosols.
  • Wear appropriate PPE: safety glasses, lab coat, and chemical-resistant gloves. For powders, consider particulate masks during weighing.
  • Avoid contact with strong oxidizers, strong acids/bases, and ignition sources until compatibility is known.
  • Use dedicated, labeled containers; minimize exposure to ambient humidity if the material is hygroscopic (unknown—verify via SDS/CoA).

First-aid overview (general):

  • Inhalation: move to fresh air; seek medical attention if symptoms persist.
  • Skin/eye contact: rinse with water for at least 15 minutes; remove contaminated clothing.
  • Ingestion: rinse mouth; do not induce vomiting; seek medical advice.

Spill & disposal (general):

  • Avoid dust generation; collect mechanically and place in suitable waste container.
  • Dispose according to local regulations and SDS guidance.

Always defer to the product’s SDS for authoritative hazard, exposure limits, and reactivity information.

Solvent Selection

No item-specific solubility data are provided. Selection should be guided by a structured screen and the intended process (coating, printing, crystallization, or reaction).

General solvent tiers for materials-oriented organics (literature/general):

  • Aromatic nonpolar: toluene, xylene, chlorobenzene (CB) — common for solution processing and thin-film deposition.
  • Chlorinated high-boiling: o-dichlorobenzene (o-DCB), 1,2,4-trichlorobenzene — facilitate slow drying and improved film morphology.
  • Polar aprotic: DMF, DMSO, NMP — useful for ionic/heteroatom-rich materials; excellent for high-concentration inks.
  • Ethers/esters/ketones: THF, CPME, ethyl acetate, cyclohexanone — for rapid coating/etching or lower toxicity needs.

Practical guidance:

  • Start with 1–10 mg/mL at RT; heat to 60–100 °C if necessary. Record clarity, viscosity, and stability over 24 h.
  • For film work (spin-coating/inkjet), pair high-boiling primary solvent (e.g., o-DCB, DMSO) with low-boiling cosolvent (e.g., THF, MeCN) to tune drying kinetics. Always verify chemical compatibility first.
  • If the compound is water- or alcohol-soluble (unknown here), evaluate MeOH, EtOH, IPA, water mixtures.

Note: Because solubility is item-specific and not disclosed for m32bICT, finalize solvent choice only after a focused screen and consultation of the CoA.

Storage and Reconstitution

Storage conditions provided in product data:

  • Storage: Room temperature.
  • Shipped in: Not specified for this item; refer to CoA/Spec Sheet.

General storage guidance (materials-science solids):

  • Store in a tightly sealed container under dry, inert atmosphere if moisture/air sensitivity is suspected (unknown for this item). Use desiccant and protect from light if the material is photosensitive (verify via SDS/CoA).
  • For long-term stability, maintain at consistent ambient temperature; avoid repeated thermal cycling.

Reconstitution/preparation (generic guidance):

  • Perform a solubility screen to identify suitable solvents. Warm gently (50–100 °C) and sonicate if needed. Filter solutions through 0.2 µm PTFE prior to use in coatings or device fabrication.
  • If particulate-free aqueous dispersions are required, consider probe sonication with appropriate stabilizers only after compatibility checks.

Note: Because appearance, hygroscopicity, and exact solvent compatibility are not specified for m32bICT, consult the CoA/SDS and perform small-scale trials to finalize handling and solution-preparation procedures.

Research use note: For research use only.

Structure and Identity

Brief overview: m32bICT is listed under Materials Science, but no structural identifiers are provided in the product data.

  • Item name (catalog): m32bICT (SKU: M1504812)
  • CAS: 1260031-39-7
  • Chemical name: Not specified for this item; refer to CoA/Spec Sheet.
  • Molecular formula: Not specified for this item; refer to CoA/Spec Sheet.
  • Molecular weight: Not specified for this item; refer to CoA/Spec Sheet.
  • SMILES: Not specified for this item; refer to CoA/Spec Sheet.
  • InChIKey: Not specified for this item; refer to CoA/Spec Sheet.

Structural features (general guidance since structure is not provided):

  • Functional groups, ring systems, and stereochemistry are not disclosed in the product data.
  • For materials-science organics (general context), typical motifs can include conjugated aromatics/heteroaromatics, donor–acceptor linkages, or ionic side chains to tune film morphology and energy levels. This is general literature context only and not specific to m32bICT.

2D structure (description):

  • Not available. Please consult the product’s CoA/SDS or request a technical data package for structural depiction and identifiers.
Synthetic Utility

The product data do not disclose structure or functional groups for m32bICT; therefore, specific synthetic roles cannot be assigned.

General considerations if used as a building block (context only):

  • Confirm identity and purity by NMR (1H/13C), HRMS, FTIR, and, if relevant, XPS/elemental analysis for heteroatom content before transformations.
  • Map potential reactivity from the structure (once available): electrophilic vs. nucleophilic sites, cross-coupling handles (aryl halides, boronates), or condensation functionalities (aldehydes, amines, acids).
  • For materials-targeted synthesis, track batch reproducibility (purity, residual metals, particle size) as these factors often dominate device performance.

Because no functional groups or reactivity handles are provided for this item, please consult the CoA/technical dossier for any recommended transformations or derivatizations.

Target Specificity

Not applicable. m32bICT is not presented as a biological target-binding reagent (e.g., antibody, ligand, inhibitor), and no antigen/epitope or isotype information is provided.

  • Item-specific bio-target data: Not specified for this item; refer to CoA/Spec Sheet.

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