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5-Nitro-2-piperidinopyridine, a chemical compound with the formula C10H12N4O2, is a nitro-containing heterocyclic compound. It is characterized by its yellow crystalline form and solubility in organic solvents. 5-Nitro-2-piperidinopyridine plays a significant role in organic synthesis, particularly for the development of pharmaceuticals and agrochemicals.

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  • 26820-61-1 Structure
  • Basic information

    1. Product Name: 5-Nitro-2-piperidinopyridine
    2. Synonyms: 5-Nitro-2-piperidinopyridine;2-Piperidino-5-nitropyridine;NSC102511;5-Nitro-2-(piperidine-1-yl)pyridine
    3. CAS NO:26820-61-1
    4. Molecular Formula: C10H13N3O2
    5. Molecular Weight: 207.23
    6. EINECS: N/A
    7. Product Categories: N/A
    8. Mol File: 26820-61-1.mol
  • Chemical Properties

    1. Melting Point: 83-84℃
    2. Boiling Point: 380.4 °C at 760 mmHg
    3. Flash Point: 183.9 °C
    4. Appearance: /
    5. Density: 1.242
    6. Vapor Pressure: 5.45E-06mmHg at 25°C
    7. Refractive Index: 1.582
    8. Storage Temp.: N/A
    9. Solubility: N/A
    10. PKA: 4.63±0.29(Predicted)
    11. CAS DataBase Reference: 5-Nitro-2-piperidinopyridine(CAS DataBase Reference)
    12. NIST Chemistry Reference: 5-Nitro-2-piperidinopyridine(26820-61-1)
    13. EPA Substance Registry System: 5-Nitro-2-piperidinopyridine(26820-61-1)
  • Safety Data

    1. Hazard Codes: N/A
    2. Statements: N/A
    3. Safety Statements: N/A
    4. WGK Germany:
    5. RTECS:
    6. HazardClass: N/A
    7. PackingGroup: N/A
    8. Hazardous Substances Data: 26820-61-1(Hazardous Substances Data)

26820-61-1 Usage

Uses

Used in Pharmaceutical Industry:
5-Nitro-2-piperidinopyridine is used as an intermediate in the synthesis of antiparasitic drugs and other biologically active compounds. Its unique structure and properties make it a valuable component in the creation of new medications with potential therapeutic benefits.
Used in Agrochemical Industry:
In the agrochemical sector, 5-Nitro-2-piperidinopyridine serves as a key intermediate for the production of various agrochemicals. Its application contributes to the development of effective pesticides and other agricultural chemicals that enhance crop protection and yield.
Overall, 5-Nitro-2-piperidinopyridine's versatility in both the pharmaceutical and agrochemical industries highlights its importance as a chemical compound in organic synthesis, driving innovation and advancement in these fields.

Check Digit Verification of cas no

The CAS Registry Mumber 26820-61-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,6,8,2 and 0 respectively; the second part has 2 digits, 6 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 26820-61:
(7*2)+(6*6)+(5*8)+(4*2)+(3*0)+(2*6)+(1*1)=111
111 % 10 = 1
So 26820-61-1 is a valid CAS Registry Number.
InChI:InChI=1/C10H13N3O2/c14-13(15)9-4-5-10(11-8-9)12-6-2-1-3-7-12/h4-5,8H,1-3,6-7H2

26820-61-1SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 17, 2017

Revision Date: Aug 17, 2017

1.Identification

1.1 GHS Product identifier

Product name 5-nitro-2-piperidin-1-ylpyridine

1.2 Other means of identification

Product number -
Other names Piperidine,5-nitro-2-pyridyl

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:26820-61-1 SDS

26820-61-1Relevant articles and documents

Room-Temperature Amination of Chloroheteroarenes in Water by a Recyclable Copper(II)-Phosphaadamantanium Sulfonate System

Dandela, Rambabu,Desai, Aman A.,Kapdi, Anant R.,Kori, Santosh,Maity, Dilip K.,Parmar, Udaysinh,Somvanshi, Dipesh

, p. 8900 - 8925 (2021/07/20)

Buchwald-Hartwig amination of chloroheteroarenes has been a challenging synthetic process, with very few protocols promoting this important transformation at ambient temperature. The current report discusses about an efficient copper-based catalytic system (Cu/PTABS) for the amination of chloroheteroarenes at ambient temperature in water as the sole reaction solvent, a combination that is first to be reported. A wide variety of chloroheteroarenes could be coupled efficiently with primary and secondary amines as well as selected amino acid esters under mild reaction conditions. Catalytic efficiency of the developed protocol also promotes late-stage functionalization of active pharmaceutical ingredients (APIs) such as antibiotics (floxacins) and anticancer drugs. The catalytic system also performs efficiently at a very low concentration of 0.0001 mol % (TON = 980,000) and can be recycled 12 times without any appreciable loss in activity. Theoretical calculations reveal that the π-acceptor ability of the ligand PTABS is the main reason for the appreciably high reactivity of the catalytic system. Preliminary characterization of the catalytic species in the reaction was carried out using UV-VIS and ESR spectroscopy, providing evidence for the Cu(II) oxidation state.

Cu-Catalyzed Direct Amination of Cyclic Amides via C-OH Bond Activation Using DMF

Chen, Peng,Luo, Kaixiu,Yu, Xianglin,Yuan, Xu,Liu, Xiaoyu,Lin, Jun,Jin, Yi

supporting information, p. 6547 - 6551 (2020/09/02)

Herein, we describe a Cu-catalyzed approach to directly accessing aromatic heterocyclic amines from cyclic amides. The most-reported methods for cyclic amide conversions to aromatic heterocyclic amines use an activating group, such as a halogen atom or a

HFIP Promoted Low-Temperature SNAr of Chloroheteroarenes Using Thiols and Amines

Bhujabal, Yuvraj B.,Vadagaonkar, Kamlesh S.,Gholap, Aniket,Sanghvi, Yogesh S.,Dandela, Rambabu,Kapdi, Anant R.

, p. 15343 - 15354 (2019/12/04)

A highly efficient and an unprecedented hexafluoro-2-propanol, promoting low-temperature aromatic nucleophilic substitutions of chloroheteroarenes, has been performed using thiols and (secondary) amines under base-free and metal-free conditions. The developed protocol also provides excellent regio-control for the selective functionalization of dichloroheteroarenes, while the utility of the protocol was demonstrated by the modification of a commercially available drug ceritinib.

First-in-class DAPK1/CSF1R dual inhibitors: Discovery of 3,5-dimethoxy-N-(4-(4-methoxyphenoxy)-2-((6-morpholinopyridin-3-yl)amino)pyrimidin-5-yl)benzamide as a potential anti-tauopathies agent

Farag, Ahmed Karam,Hassan, Ahmed H.E.,Jeong, Hyeanjeong,Kwon, Youngji,Choi, Jin Gyu,Oh, Myung Sook,Park, Ki Duk,Kim, Yun Kyung,Roh, Eun Joo

, p. 161 - 175 (2018/11/23)

Kinase irregularity has been correlated with several complex neurodegenerative tauopathies. Development of selective inhibitors of these kinases might afford promising anti-tauopathy therapies. While DAPK1 inhibitors halt the formation of tau aggregates and counteract neuronal death, CSF1R inhibitors could alleviate the tauopathies-associated neuroinflammation. Herein, we report the design, synthesis, biological evaluation, mechanistic study, and molecular docking study of novel CSF1R/DAPK1 dual inhibitors as multifunctional molecules inhibiting the formation of tau aggregates and neuroinflammation. Compound 3l, the most potent DAPK1 inhibitor in the in vitro kinase assay (IC50 = 1.25 μM) was the most effective tau aggregates formation inhibitor in the cellular assay (IC50 = 5.0 μM). Also, compound 3l elicited potent inhibition of CSF1R in the in vitro kinase assay (IC50 = 0.15 μM) and promising inhibition of nitric oxide production in LPS-induced BV-2 cells (55% inhibition at 10 μM concentration). Kinase profiling and hERG binding assay anticipated the absence of off-target toxicities while the PAMPA-BBB assay predicted potentially high BBB permeability. The mechanistic study and selectivity profile suggest compound 3l as a non-ATP-competitive DAPK1 inhibitor and an ATP-competitive CSF1R inhibitor while the in silico calculations illustrated binding of compound 3l to the substrate-binding site of DAPK1. Hence, compound 3l might act as a protein-protein interaction inhibitor by hindering DAPK1 kinase reaction through preventing the binding of DAPK1 substrates.

N-heteroarylsulfonamide derivative, and preparation and application of same

-

Paragraph 0128; 0129-0131; 0135, (2019/05/15)

The invention provides an N-heteroarylsulfonamide derivative, and preparation and an application of same. The derivative includes pharmaceutically acceptable salts and solvates thereof; a test provesthat the N-heteroarylsulfonamide derivative allows specific combination and inhibit or reduce the activity of potassium pathway Kv1.3, so that the derivative can be used for treating autoimmune diseases, caused by abnormal activation of the potassium pathway Kv1.3, of human or animal. An inhibitor in the invention also includes a medicinal composition of the compound. The invention also provides amethod for preparing the compound. The derivative has the general formula as the specification.

Design, synthesis and biological evaluation N2-(2-alkyoxy-6-aliphatic aminopyridin-3-yl)-2,4-diaminepyrimidine derivatives bearing acylamino or DBTD ‘head’ as potential ALK inhibitors

Xing, Lingyun,Jing, Tongfei,Zhang, Junlong,Guo, Ming,Miao, Xiuqi,Jiang, Feng,Zhai, Xin

, p. 689 - 699 (2018/10/02)

Aiming to develop promising ALK inhibitors, two series of N2-(2-alkyoxy-6-aliphatic aminopyridin-3-yl)-2,4-diaminepyrimidine derivatives (22a-x and 23a-d) were designed according to scaffold hopping and bioisosterism principles. All compounds were efficiently synthesized by concise reactions and anti-proliferative activities on ALK-addicted H2228, Karpas299 cells and EGFR-expressive A549 cell were evaluated by MTT assay. Several compounds exhibited potential cytotoxic activities with IC50 values below 0.10 μM. Five compounds (22g, 22h, 22l, 22s and 23a) were selected for further enzymatic determination, resulting in the discovery of 22l against ALK and ALKL1196M with IC50 values of 2.1 nM and 3.8 nM. Particularly, western blot and cell apoptosis assays identified 22l as a promising ALK inhibitor, which was capable of obviously inhibiting cellular ALK activity and inducing cell apoptosis. Eventually, molecular docking modes of 22l with ALK confirmed structural basis in accordance with the SARs analysis.

Synthesis and antiproliferative activity of novel 4-substituted-phenoxy-benzamide derivatives

Sun, Chi-Yu,Li, Yang-Sheng,Shi, Ai-Long,Li, Ya-Fei,Cao, Rui-Fang,Ding, Huai-Wei,Yin, Qing-Qing,Zhang, Li-Juan,Zheng, Hua-Chuan,Song, Hong-Rui

supporting information, p. 1307 - 1310 (2015/12/31)

A series of novel 4-substituted-phenoxy-benzamide derivatives bearing an aryl cycloaliphatic amine moiety were synthesized and evaluated for antiproliferative activity against SW620, HT29 and MGC803 cancer cell lines in vitro. The pharmacological data demonstrated that the majority of target compounds exhibited moderate efficacy in HT29 and MGC803 cell lines. Compound 10c showed promising inhibition of hedgehog (Hh) signaling pathway in an Hh-related assay. In addition, the superposition pattern of 10c showed a good fit for a pharmacophoric model generated by Hh inhibitors and provided a basis for further structural optimization.

Nucleophilic heteroaromatic substitution: Kinetics of the reactions of nitropyridines with aliphatic amines in dipolar aprotic solvents

Isanbor, Chukwuemeka,Emokpae, Thomas A.

, p. 125 - 135 (2008/09/18)

Rate data are reported for the reactions of 2-chloro-5-nitropyridine 2a, 2-chloro-3-nitropyridine 2b, and the corresponding 2-phenoxy derivatives 2c with n-butylamine, pyrrolidine and piperidine and 2d with n-butylamine and pyrrolidine in dimethyl sulfoxi

The effects of ring substituents and leaving groups on the kinetics of SNAr reactions of 1-halogeno- and 1-phenoxy-nitrobenzenes with aliphatic amines in acetonitrile

Crampton, Michael R.,Emokpae, Thomas A.,Isanbor, Chukwuemeka

, p. 1378 - 1383 (2008/09/18)

Rate constants are reported for the reactions of a series of 1-chloro-, 1-fluoro- and 1-phenoxy-nitrobenzenes activated by CF3 or CN groups or by ring-nitrogen with n-butylamine, pyrrolidine or piperidine in acetonitrile. The results are compar

C-N bond formation by the oxidative alkylamination of azines: Comparison of AgPy2MnO4 versus KMnO4 as oxidant

Gulevskaya, Anna V.,Maes, Bert U. W.,Meyers, Caroline,Herrebout, Wouter A.,Van Der Veken, Benjamin J.

, p. 5305 - 5314 (2007/10/03)

Reports on the successful oxidative alkylamination of azines by the S NH-reaction, with the use of alkylamines other than methylamine, are very scarce. Hitherto, the experimental limitation to extend oxidative animation of azines wit

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