4'-Aminoacetophenone - ≥99% , CAS No.99-92-3

CAS: 99-92-3 Cat. No.: A110614 Summenformel: C8H9NO Molekulargewicht: 135.16 Beilstein Registry Number: 471493 EG-Nummer: 202-801-2
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GRADE & PURITY ≥99%
Synonyms
4-ACETYLANILINE | 1-acetyl-4-aminobenzene | BCP30575 | FT-0617545 | 1-(4-Aminophenyl)ethanone;p-Aminoacetophenone; 1-Acetyl-4-aminobenzene; 4-Acetylaniline; 4-Acetylphenylamine;Clenbuterol Impurity D | Acetophenone, 4'-amino- | Acetophenone, 4-amino- | 4-
Storage
Room temperature
Shipped In
Normal
★
Size
Deutschland (EU)
USA*
Price
Qty
5g
A110614-5g
—
5 Auf Lager
8,59€
25g
A110614-25g
—
4 Auf Lager
9,46€
100g
A110614-100g
—
3 Auf Lager

14,66€

22,47€
Speichern 7,81 € (34.75%)
250g
A110614-250g
2 Auf Lager
2 Auf Lager

32,89€

49,37€
Speichern 16,49 € (33.39%)
500g
A110614-500g
—
1 Auf Lager

58,05€

87,55€
Speichern 29,50 € (33.70%)
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Why this grade

≥99% for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Room temperature Ships Normal 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.

📚

Literature proof

Cited in 16 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Specifications

Synonyme
4-ACETYLANILINE | 1-acetyl-4-aminobenzene | BCP30575 | FT-0617545 | 1-(4-Aminophenyl)ethanone;p-Aminoacetophenone; 1-Acetyl-4-aminobenzene; 4-Acetylaniline; 4-Acetylphenylamine;Clenbuterol Impurity D | Acetophenone, 4'-amino- | Acetophenone, 4-amino- | 4-
Spezifikationen & Reinheit
≥99%
Storage
Room temperature
Verschickt in
Normal
Reinheit
≥99%
Namen und Kennungen
Pubchem Sid504751352
Pubchem Sid Urlhttps://pubchem.ncbi.nlm.nih.gov/substance/504751352
Kanonisches LächelnCC(=O)C1=CC=C(C=C1)N
IUPAC Name1-(4-aminophenyl)ethanone
InChIKeyGPRYKVSEZCQIHD-UHFFFAOYSA-N
INCHI1S/C8H9NO/c1-6(10)7-2-4-8(9)5-3-7/h2-5H,9H2,1H3
Isomere SMILES CC(=O)C1=CC=C(C=C1)N
WGK Deutschland 3
RTECS AM5500000
Molekulargewicht 135.16
Beilstein 471493
Reaxy-Rn 471493
Reaxys-RN_link_address https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=471493&ln=

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

Taxonomic Classification

Taxonomy Tree

KingdomOrganic compounds
SuperclassOrganic oxygen compounds
KlasseOrganooxygen compounds
SubclassCarbonyl compounds
Intermediate Tree Nodes Ketones - Aryl ketones - Phenylketones
Direct ParentAlkyl-phenylketones
Alternative Parents Acetophenones  Benzoyl derivatives  Aryl alkyl ketones  Aniline and substituted anilines  Primary amines  Organopnictogen compounds  Organic oxides  Hydrocarbon derivatives  
Molecular FrameworkAromatic homomonocyclic compounds
Substituents Alkyl-phenylketone - Acetophenone - Aniline or substituted anilines - Aryl alkyl ketone - Benzoyl - Benzenoid - Monocyclic benzene moiety - Organic nitrogen compound - Organopnictogen compound - Organic oxide - Hydrocarbon derivative - Primary amine - Organonitrogen compound - Amine - Aromatic homomonocyclic compound
BeschreibungThis compound belongs to the class of organic compounds known as alkyl-phenylketones. These are aromatic compounds containing a ketone substituted by one alkyl group, and a phenyl group.
External Descriptors Not available
3D-Struktur
Interaktives chemisches Strukturmodell





Zugehörige Ziele (menschlich)
TYR Tclin Tyrosinase (717 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Wirkungsmechanismen
Zertifikate (CoA, COO, BSE/TSE und Analyse-Diagramm)
C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

12 results found

Lot NumberCertificate TypeDatumArtikel
I2622075Certificate of AnalysisSep 27, 2026 A110614
B2605041Certificate of AnalysisFeb 28, 2026 A110614
L2517065Certificate of AnalysisDec 25, 2025 A110614
G2509129Certificate of AnalysisJul 22, 2025 A110614
K2426183Certificate of AnalysisNov 29, 2024 A110614
A2215113Certificate of AnalysisDec 21, 2021 A110614
A2215114Certificate of AnalysisDec 21, 2021 A110614
A2215116Certificate of AnalysisDec 21, 2021 A110614
A2215117Certificate of AnalysisDec 21, 2021 A110614
A2215118Certificate of AnalysisDec 21, 2021 A110614
E2311063Certificate of AnalysisDec 21, 2021 A110614
E2311072Certificate of AnalysisAug 10, 2021 A110614

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Chemische und physikalische Eigenschaften
LöslichkeitIt is soluble in hot water, ethanol and ether
EmpfindlichkeitMoisture sensitive.
Siedepunkt (°C)293-295°C
Schmelzpunkt (°C)106°C
Molekulargewicht135.160 g/mol
XLogP30.800
Hydrogen Bond Donor Count1
Hydrogen Bond Acceptor Count2
Rotatable Bond Count1
Exact Mass135.068 Da
Monoisotopic Mass135.068 Da
Topological Polar Surface Area43.100 Ų
Heavy Atom Count10
Formal Charge0
Complexity125.000
Isotope Atom Count0
Defined Atom Stereocenter Count0
Undefined Atom Stereocenter Count0
Defined Bond Stereocenter Count0
Undefined Bond Stereocenter Count0
The total count of all stereochemical bonds0
Covalently-Bonded Unit Count1
FAQs und Artikel
Citations of This Product
Referenzen
1. Ningdi Xu, Baolong Wang, Ziqiang An, Yingying Liu, Li Liu, Zhen Hu, Yudong Huang.  (2022)  γ-Ray-sensitive motif-driven versatile epoxy thermoset: Highly efficient radiation degradation, intrinsic flame resistance and sustainable synthesis.  CHEMICAL ENGINEERING JOURNAL,      [PMID:] [10.1016/j.cej.2022.138151]
2. Ningdi Xu, Baolong Wang, Ziqiang An, Yingying Liu, Li Liu, Zhen Hu, Yudong Huang.  (2022)  Complete Degradation of a High-Performance Epoxy Thermoset Enabled by γ-ray-Sensitive Motifs Based on the Cascaded Synergetic Strategy.  CHEMISTRY OF MATERIALS,      [PMID:] [10.1021/acs.chemmater.2c00728]
3. Tingting Liu, Zizhu Wang, Mingxi Liu, Tao Hu, Shenghu Zhou.  (2022)  Synthesis of Hollow Silica Nanotubes from Linear Metallosupramolecular Polyelectrolytes and Their Application as Catalyst Supports for Hydrogenation.  ACS Applied Materials & Interfaces,      [PMID:35050583] [10.1021/acsami.1c22780]
4. Qinqin Luo, Yulin Sun, Biao Yu, Jiangli Song, Dexin Tan, Jianqing Zhao, Shijing Yan.  (2020)  Synthesis of a hyperbranched polyamide oligomer containing DOPO for simultaneously enhancing the flame retardance and glass transition temperature of epoxy resin.  POLYMERS FOR ADVANCED TECHNOLOGIES,  32  (2): (525-537).  [PMID:] [10.1002/pat.5106]
5. Bingya Chen, Chenyang Zhang, Yanmei Zhao, Dongsheng Wang, Gregory V. Korshin, Jinren Ni, Mingquan Yan.  (2020)  Interpreting main features of the differential absorbance spectra of chlorinated natural organic matter: Comparison of the experimental and theoretical spectra of model compounds.  WATER RESEARCH,      [PMID:32736281] [10.1016/j.watres.2020.116206]
6. Hongmei Yang, Miao Wang, Yihe Huang, Qiaoyu Qiao, Chunjie Zhao, Min Zhao.  (2019)  In vitro and in vivo evaluation of a novel mitomycin nanomicelle delivery system.  RSC Advances,  9  (26): (14708-14717).  [PMID:35516345] [10.1039/C9RA02660F]
7. Wenwen Guo, Xin Wang, Chandra Sekhar Reddy Gangireddy, Junling Wang, Ying Pan, Weiyi Xing, Lei Song, Yuan Hu.  (2018)  Cardanol derived benzoxazine in combination with boron-doped graphene toward simultaneously improved toughening and flame retardant epoxy composites.  COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING,      [PMID:] [10.1016/j.compositesa.2018.10.010]
8. Wu Huixiang, Huo Danqun, Zhao Yanan, Ma Na, Hou Jingzhou, Liu Miao, Shen Caihong, Hou Changjun.  (2017)  A non-enzymatic electro-chemical sensor for organophosphorus nerve agents mimics and pesticides detection.  SENSORS AND ACTUATORS B-CHEMICAL,      [PMID:] [10.1016/j.snb.2017.07.004]
9. Dandan Wu, Yanqiao Zhang, Ming Wen, Hao Fang, Qingsheng Wu.  (2017)  Fe3O4/FeNi Embedded Nanostructure and Its Kinetic Law for Selective Catalytic Reduction of p-Nitrophenyl Compounds.  INORGANIC CHEMISTRY,      [PMID:28426207] [10.1021/acs.inorgchem.7b00304]
10. Hao Fang, Ming Wen, Hanxing Chen, Qingsheng Wu, Weiying Li.  (2015)  Graphene stabilized ultra-small CuNi nanocomposite with high activity and recyclability toward catalysing the reduction of aromatic nitro-compounds.  Nanoscale,  8  (1): (536-542).  [PMID:26646949] [10.1039/C5NR05016B]
11. Zhong-Qiong Qin, Ze-Tao Xiao, Xi-Yang Lan, Xin Wang, Yuan Hu, Lei Song.  (2025)  Cardanol-derived polybenzoxazine networks integrated with high glass transition temperatures, flame retardancy and toughness.  POLYMER DEGRADATION AND STABILITY,      [PMID:] [10.1016/j.polymdegradstab.2025.111232]
12. Xinhao Cen, Zhilin Cao, Liming Lin, Zhengzhou Wang.  (2024)  Construction of a mesoporous silica/ phytate-based flame-retardant hybrid and its modified epoxy resin and cyanate ester copolymer with simultaneously improved flame retardancy, smoke suppression and dielectric properties.  POLYMER,      [PMID:] [10.1016/j.polymer.2024.127418]
13. Yunpeng Ma, Haowen Tang, Xinjie Liu, Xinyu Lu, Xiaoli Gu.  (2025)  Synthesis and characterization of DOPO-derived curing agent and lignin-epoxy system.  REACTIVE & FUNCTIONAL POLYMERS,      [PMID:] [10.1016/j.reactfunctpolym.2025.106447]
14. Wenhui Yan, Shijun Li, Jieyao Wang, Xingyu Ma, Mingxuan Zhang, Lei Li.  (2025)  Domino Polymerization toward Microporous Polythioureas for Selective Gold Recovery from Electronic Waste.  ACS Applied Polymer Materials,      [PMID:] [10.1021/acsapm.5c02365]
15. Xing Liu, Zhenzhi Liu, Houqun Xiao, Lijing Han, Jianqing Zhao.  (2025)  Phosphorus-Containing Polyimidothioether as a Latent Curing Agent and Flame Retardant for One-Component Epoxy Resins.  ACS Applied Polymer Materials,      [PMID:] [10.1021/acsapm.5c02469]
16. Weiyi Jin, Tianqi Yang, Yi Tang, Weiyu Zhang, Miao Tong, Xiangdong Zhang, Chenliang Gong.  (2026)  Covalent immobilization of perfluorophenylphosphonic acid to simultaneously achieve high stability and proton conductivity for high-temperature proton exchange membrane.  JOURNAL OF MEMBRANE SCIENCE,      [PMID:] [10.1016/j.memsci.2026.125400]
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What is the purity of this product?
This product is supplied at ≥99% purity (chemical assay). Lot-specific values are stated on the Certificate of Analysis.
How should this product be stored?
Store at room temperature.
How is this product shipped?
This product ships under standard ambient conditions. No temperature-controlled packaging is required.
What are the CAS number, molecular formula and molecular weight?
The CAS Number is 99-92-3, the molecular formula is C8H9NO, and the molecular weight is 135.16 g/mol. InChIKey GPRYKVSEZCQIHD-UHFFFAOYSA-N.
What documentation is provided?
Available product documentation, including Certificates of Analysis (COA), Safety Data Sheets (SDS), and specification sheets, is shown in the product document area. Document availability and access follow the current site policy.

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