IC165 , CAS No.1454686-15-7

CAS: 1454686-15-7 Cat. No.: I1504407
Disponible para pedir
Storage
Room temperature
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Size
USA
Alemania (EU)*
Price
Qty
250mg
I1504407-250mg
Fabricado bajo pedido · 8–12 semanas
999,90US$
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Why this grade

for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

🌡

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 item-specific, validated protocols are provided for IC165. For materials-science usage such as thin-film deposition, device fabrication, or precursor conversion, develop application-specific standard operating procedures based on the compound’s verified solubility, thermal behavior (DSC/TGA), and purity profile. Always perform small-scale feasibility tests to optimize concentrations, filtration (e.g., 0.2 µm PTFE), deposition parameters, and post-treatments (annealing, atmosphere control) as appropriate to the platform.

Biological Roles

This product is listed under Materials Science. No biological function or role is specified for IC165.

General note

  • Without structural information, discussion of metabolic pathways or biochemical interactions would be speculative. If this compound is evaluated in bio-related materials (e.g., bioelectronics, sensing interfaces), consult primary literature and the SDS for any relevant hazard/toxicity context. All uses are strictly for research and laboratory applications; not for human or animal use.
Buffer Applications

Not typically applicable. IC165 is categorized under Materials Science and is not presented as a buffering reagent. For aqueous buffer preparation, use well-characterized buffering systems (e.g., phosphate, HEPES, Tris) with defined pKa and ionic strength parameters. If IC165 must be formulated in water, first confirm aqueous solubility and compatibility; otherwise, prepare stock solutions in a miscible organic solvent as appropriate (general guidance).

Green Alternatives

Because the exact structure and processing route of IC165 (CAS 1454686-15-7) are not specified, green-chemistry guidance is provided in general terms.

Greener approach levers (general)

  • Solvent substitution: Prefer low-toxicity, bio-derived, or recyclable options when feasible (e.g., 2-MeTHF, CPME, EtOAc, Me-TPP, propylene carbonate) over chlorinated or highly volatile solvents.
  • Process intensification: Employ higher-solids formulations, continuous flow, or solventless methods to reduce solvent usage and energy intensity.
  • Benign auxiliaries: Choose greener bases (e.g., K2CO3 over NaH where compatible) and alternative oxidants/reductants (e.g., O2, H2, electrochemistry) when reaction chemistry permits.
  • Workup/waste: Implement aqueousless or minimal-water quench strategies, in-line scavengers, and solvent recycling.

Illustrative comparison (generic)

  • Traditional solvent: Dichloromethane (high volatility, halogenated) vs. Alternative: Ethyl acetate (biodegradable, higher bp; may slow drying but reduces halogenated waste).
  • Traditional ether: THF (peroxide former) vs. Alternative: 2-MeTHF (bio-based, lower miscibility with water; can improve phase-split workups).

Trade-offs

  • Greener substitutions must be validated for solubility, kinetics, selectivity, and film/device performance; minor formulation changes can impact morphology and metrics.
Pharmaceutical Uses

No pharmacopeial status or excipient role is provided for IC165. This item is supplied strictly for research use only.

General formulation note (non-claim)

  • If the compound were to be explored as a materials additive in device manufacturing (e.g., coatings, sensors), ensure compliance with relevant quality and regulatory standards for non-clinical use, and verify extractables/leachables in the intended environment. No medical or clinical uses are endorsed or implied.
Physical Properties

Item-specific properties (specification values)

  • Appearance: Not specified for this item; refer to CoA/Spec Sheet.
  • Purity/Grade: Not specified for this item; refer to CoA/Spec Sheet.
  • Melting/Boiling point: Not specified for this item; refer to CoA/Spec Sheet.
  • Density, refractive index, UV cutoff: Not specified for this item; refer to CoA/Spec Sheet.
  • Solubility profile: Not specified for this item; refer to CoA/Spec Sheet.

Literature/typical data note

  • Physicochemical constants (e.g., logP, pKa, dielectric behavior) are structure-dependent and cannot be asserted without the molecular structure. Consult primary literature tied to CAS 1454686-15-7 (literature).

Practical characterization tips (general)

  • If solid: establish melting range (capillary), DSC for polymorphism/phase transitions, TGA for thermal stability and residual solvent content (general practice).
  • If liquid: determine refractive index and density at 20/25 °C; assess water content by Karl Fischer and any stabilizer/additive content by GC/LC if applicable (general practice).
  • Spectroscopy: Acquire full 1H/13C NMR in appropriate deuterated solvent; record IR (ATR) for functional-group confirmation; UV–Vis if chromophoric (general guidance).
Quality and Grades
  • Grade/Purity: Not specified for this item; refer to CoA/Spec Sheet.

Guidance on grade interpretation (general)

  • Research-grade materials are suitable for R&D and method development. If HPLC/LC–MS suitability is required, look for statements on low UV absorbance/volatile impurity control (typically in HPLC or LC–MS grade solvents/reagents; general information).
  • If an inhibitor, dopant, monomer, or semiconductor precursor, impurity profiles (e.g., metal content, peroxides, stabilizers, residual solvents) can significantly affect performance in materials science applications. Request the CoA for batch-specific data.

Quality control recommendations (general)

  • Identity: Verify by NMR/HRMS or GC/LC–MS against literature spectra.
  • Assay: Use quantitative NMR, GC, or HPLC with external/internal standards if assay is critical.
  • Trace metals (if relevant to electronics/OPV/OLED use): Consider ICP-MS screening to ppb–ppm levels depending on device sensitivity.
  • Water and residual solvents: Karl Fischer and headspace GC, respectively, to ensure process compatibility.
Reaction and Applications

Manufacturer-supplied application details were not provided for this item. Without the structure, reaction-specific applications cannot be asserted.

General materials science use-cases (examples; not item-specific claims)

  • Organic electronics and photonics: small-molecule semiconductors, dopants, charge-transport materials, or emitters often require stringent purity and controlled processing to achieve reproducible device metrics (literature/generic context).
  • Polymer/material precursors: monomers, crosslinkers, or additives may be used in solution or bulk polymerizations; reactivity depends on functional groups present (literature/generic context).

Practical tips (general)

  • If the compound contains moisture-sensitive functionalities (e.g., acid chlorides, silyl reagents, organometallics), handle under inert atmosphere and use thoroughly dried glassware and solvents.
  • If the compound is chromophoric or air-sensitive, minimize light/oxygen exposure; consider amber glass, degassed solvents, and glovebox/Schlenk techniques as appropriate.
  • For thin-film uses, filter solutions (0.2 µm PTFE) before deposition to reduce particulate defects and consider substrate pretreatments to optimize wetting and film uniformity.
Reaction Conditions

Item-specific reaction conditions cannot be recommended without the molecular structure and functional-group profile of IC165.

General best practices

  • Atmosphere: Use inert gas (N2/Ar) for air- or moisture-sensitive reactions; quantify water by Karl Fischer when necessary.
  • Temperature: Start with ambient conditions; escalate carefully based on in situ monitoring (TLC, GC/LC). For thermally labile materials, use milder catalysts or continuous flow to improve control.
  • Solvent: Choose based on solubility, boiling point, and safety; consider greener alternatives when possible.
  • Catalysis: Select catalysts matched to the transformation (e.g., Pd for cross-coupling, Cu for click reactions, organocatalysts for enantioselective steps) as required by the structure (literature-level guidance).
  • Workup: Favor phase-efficient quench/extraction, inline scavengers, and minimal purification steps (crystallization or precipitation preferred over extensive chromatography when feasible).
Safety and Handling

GHS classification and hazard information (item-specific)

  • Signal Word: Not specified for this item; refer to SDS.
  • Hazard Statements (H-codes): Not specified for this item; refer to SDS.
  • Pictograms and GHS Classification: Not specified for this item; refer to SDS.

General laboratory precautions (non-item-specific best practices)

  • Handle in a fume hood with appropriate PPE: lab coat, safety glasses, and suitable chemically resistant gloves.
  • Avoid inhalation, ingestion, and skin/eye contact. Wash thoroughly after handling; prevent release to the environment.
  • Incompatibilities and reactivity are structure-dependent. Until known, segregate from strong oxidizers/reducers, strong acids/bases, and ignition sources; avoid moisture/air-sensitive handling unless data indicate otherwise.

First-aid overview (general)

  • Inhalation: Move to fresh air; seek medical attention if symptoms persist.
  • Skin contact: Remove contaminated clothing; wash with soap and water.
  • Eye contact: Rinse cautiously with water for several minutes; remove contact lenses if easy; continue rinsing and seek medical advice.
  • Ingestion: Rinse mouth; do not induce vomiting; obtain medical attention.

Spill/fire response (general)

  • Small spills: Absorb with inert material; dispose as hazardous waste.
  • Fire: Use CO2, dry chemical, or foam as appropriate to surrounding materials. Refer to the SDS for definitive guidance.
Solvent Selection

Item-specific solubility and solvent preferences are not provided. Refer to the CoA/Spec Sheet.

General selection strategy (materials science context)

  • Begin with a polarity screen spanning nonpolar to polar aprotic solvents (e.g., hexane, toluene, DCM, EtOAc, acetone, MeCN, DMF/DMSO) to map solubility and processing windows (general guidance).
  • For electronic/optical materials processing, prioritize high-purity anhydrous solvents with low ionic content and well-controlled water (KF) where film quality is sensitive.
  • For scale-up or coating/printing, consider boiling point, vapor pressure, and Hansen solubility parameters to tune drying rate, wetting, and morphology.

Comparison notes (general)

  • Where possible, substitute greener solvents (e.g., 2-MeTHF in place of THF; ethyl acetate in place of DCM) when performance permits. Balance solvency power, safety, drying ease, and waste profile.
Storage and Reconstitution
  • Storage conditions (item-specific): Room temperature (per product data). Protect from extremes of heat, cold, and humidity. Store tightly closed in the original container.
  • Shipped in: Not specified for this item; refer to CoA/Spec Sheet.
  • Reconstitution/preparation: Not specified for this item; refer to CoA/Spec Sheet.

General guidance

  • If the compound is moisture- or air-sensitive, store under inert gas in a desiccator or glovebox and use anhydrous handling techniques (general precaution).
  • For solution preparation, use dry, high-purity solvents. Record concentration, solvent identity, and date of preparation on the container. If long-term storage of solutions is needed, assess stability at intended temperature and protect from light if chromophoric.
  • Avoid repeated freeze–thaw or heat–cool cycles; aliquot as needed to maintain integrity.

Research Use Only: As stated by the manufacturer, this product is for research use only.

Structure and Identity
  • Product name: IC165 (SKU: I1504407)
  • CAS: 1454686-15-7
  • 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 description

  • Item-specific structural features (functional groups, ring systems, stereochemistry): Not specified for this item; refer to CoA/Spec Sheet.

Notes for identity confirmation (general guidance)

  • Cross-reference the CAS (1454686-15-7) with trusted databases (e.g., Reaxys, SciFinder, PubChem, vendor CoA) to retrieve the definitive molecular formula, structure, and IUPAC name (literature).
  • Verify the material by orthogonal checks when possible: HRMS/ESI-MS for exact mass, 1H/13C NMR for connectivity, and, if applicable, elemental analysis or HPLC/GC purity profiling (general best practice).
Synthetic Utility

Item-specific functional groups and reactivity are not provided for IC165. Accordingly, specific transformations or named-reaction applicability cannot be stated.

General guidance (structure-agnostic)

  • If IC165 is intended as a building block, plan retrosynthetic routes that minimize protecting-group manipulations and leverage robust cross-coupling, heteroatom-functionalization, or cyclization chemistry as dictated by its functional handles (literature/generic practice).
  • For polymer precursor roles, assess polymerizability (vinyl, acrylate, epoxide, anhydride, etc.) and any need for inhibitors or radical scavengers to maintain shelf stability.
  • For post-functionalization, consider orthogonal chemistry (click reactions, amide couplings, SuFEx) where compatible to streamline diversification.
Target Specificity

Not applicable. IC165 is not supplied as a biological macromolecule or antibody, and no target/epitope/isotype information is provided. This section does not pertain to materials-science reagents.

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