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O-PCE provides an unbranded, high-purity crystalline reagent verified at an analytical baseline of ≥98% purity. This deschloro-substituted arylcyclohexylamine derivative is engineered strictly for spectroscopic profiling, in vitro receptor binding assays, and forensic mass spectrometry mapping. For research use only. Not for human or veterinary use. Not for clinical, diagnostic, or consumptive applications.
O-PCE (2-Oxo-PCE) is a specialized chemical compound and analytical reference standard belonging to the arylcyclohexylamine class. This product is supplied exclusively as an unbranded, high-purity (≥98%) crystalline powder or solid matrix optimized for institutional R&D, chemical mapping, and forensic isolation profiles.
For research use only. Not for human or veterinary use. Not for clinical, diagnostic, or consumptive applications.
As an unbranded reference material, it ensures strict experimental control by eliminating confounding variables, additives, or fillers often associated with proprietary chemical lines, providing a consistent baseline for quantitative and qualitative scientific inquiries.
Chemical Identity & Classification
To support institutional documentation, corporate procurement, and formal laboratory inventory logging, the precise chemical identifiers for this compound are detailed below:
Formal IUPAC Name: 2-(ethylamino)-2-phenylcyclohexan-1-one
CAS Number: 4551-95-5 (Free Base) / 2185715-43-3 (HCl Salt form)
Molecular Formula: C
14
H
19
NO
Molar Mass: 217.31 g/mol (Free Base)
Synonyms: 2-Oxo-PCE, Eticyclidone, Deschloronorketamine structural analog
Primary Classification: Arylcyclohexylamine derivative; Cyclohexanone class analytical reference standard
Chemical & Physical Characteristics
In its isolated form, O-PCE typically presents as a highly stable, white to off-white crystalline solid or fine powder. Structurally, it serves as a close analog of ketamine and deschloroketamine (DCK), characterized by the complete absence of any halogen substitution on the phenyl ring while featuring an N-ethyl substitution on the amino chain.
This specific architecture influences its molecular surface geometry, lipophilic index, and thermodynamic melting point profiles. The compound exhibits excellent stability under standard ambient laboratory conditions when shielded from high humidity and direct ultraviolet light. It demonstrates low solubility in pure water as a free base (high solubility in its hydrochloride form) and dissolves readily in polar organic solvents such as Dimethyl Sulfoxide (DMSO), methanol, and anhydrous ethanol.
Purity & Analytical Verification
Every batch of this research chemical is subjected to a strict quality control matrix to ensure it meets or exceeds a baseline purity threshold of ≥98%. We utilize robust, industry-standard analytical methodologies to confirm structural integrity and verify the complete absence of synthesis precursors, unreacted halogens, or positional isomers.
Batch analysis is routinely performed via High-Performance Liquid Chromatography (HPLC) and Gas Chromatography-Mass Spectrometry (GC-MS) to establish purity curves. Nuclear Magnetic Resonance (NMR) spectroscopy and Liquid Chromatography-Mass Spectrometry (LC-MS) are utilized to confirm exact molecular weights and structural configurations. Certificates of Analysis (COAs) are meticulously logged and remain available to certified laboratories upon request.
Quality Control & Batch Integrity
Our backend manufacturing protocols adhere to a rigid batch-controlled process. This structural architecture guarantees total lot traceability from initial chemical synthesis to final localized packaging.
Internal quality control frameworks dictate that each lot must fall within narrow statistical variances before being cleared for distribution. By utilizing an independent, multi-tiered verification process involving both in-house analysis and third-party laboratory audits, we mitigate discrepancies, offering an uncompromised analytical history that supports reproducible research and eliminates batch-to-batch inconsistencies in long-term experimental models.
Safety, Handling & Laboratory Precautions
O-PCE is a potent arylcyclohexylamine molecule and must be managed exclusively within a controlled laboratory environment by trained personnel. Researchers must utilize appropriate personal protective equipment (PPE), including nitrile gloves, chemical splash goggles, and professional laboratory coats.
Due to the fine particulate nature of crystalline powders, all open handling, weighing, and solution preparation must be performed within a certified chemical fume hood or localized laminar flow enclosure to mitigate inhalation risks or accidental mucosal exposure. Laboratories must cross-reference their safety protocols with the official Material Safety Data Sheet (MSDS/SDS) before introducing this reagent into active experimentation.
Packaging, Labeling & Storage
To preserve chemical bonds and prevent environmental degradation via moisture ingress or oxidation, this reagent is enclosed in professional, research-grade containers equipped with secure, tamper-resistant induction seals. Labels adhere strictly to international chemical transport regulations, explicitly listing the structural nomenclature, CAS indicators, and mandatory hazard communication symbols.
For long-term storage and to minimize structural breakdown, containers must remain hermetically sealed and stored in a cool, dry environment, preferably at a controlled temperature range of 2°C to 8°C, isolated from incompatible strong oxidizing agents or direct heat sources.
Intended Research Use & Market Positioning
The market positioning of O-PCE is strictly restricted to professional scientific, academic, and industrial sectors. It serves as an essential reference material for:
Analytical Chemistry: Validation of chromatographic separation methodologies and mass spectrometry baselines.
Forensic Science: Profiling, detection matrix development, and structural classification of novel arylcyclohexylamine compounds.
Industrial R&D: Mass-spectrometric mapping and evaluation of unhalogenated cyclohexanone structures in material synthesis.
This chemical is entirely barred from any application involving living tissue models outside of validated in vitro protocols.
Ordering, Availability & Fulfillment
We maintain consistent stock configurations of O-PCE to satisfy wholesale institutional procurement pipelines and independent laboratory demands efficiently. Our automated checkout system features encrypted protocols to ensure a secure transaction architecture compatible with major corporate payment streams.
Orders are routed directly into a discrete fulfillment workflow, utilizing neutral, ruggedized exterior packaging that protects the chemical integrity during transit. All shipments are paired with comprehensive real-time tracking parameters and backed by a responsive customer support network to resolve shipping or documentation inquiries promptly.
Legal & Regulatory Disclaimer
For research use only. Not for human or veterinary use. Not for clinical, diagnostic, or consumptive applications. This product is synthesized, labeled, and distributed purely as an analytical reagent and laboratory reference material. It is not intended for medical, therapeutic, food additive, or household environments.
The procurement, import, and possession of arylcyclohexylamine derivatives may be subject to localized restrictions, scheduling, or licensing laws depending on your jurisdiction. The purchasing entity assumes full, sole responsibility for validating domestic regulatory compliance before final checkout and ensuring all laboratory practices align with regional and international laws.
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