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isonicotinaldehyde (4-pyridylmethylene)hydrazone

  • Cas number:6957-22-8
  • purity:99%
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Product Details

Bulk supply high purity isonicotinaldehyde (4-pyridylmethylene)hydrazone 6957-22-8, Paid sample available

  • Molecular Formula: C12H10 N4
  • Molecular Weight: 210.238
  • Vapor Pressure: 3.97E-05mmHg at 25°C 
  • Melting Point: 178 °C 
  • Boiling Point: 362.7°C at 760 mmHg 
  • PKA: 4.68±0.50(Predicted) 
  • Flash Point: 173.1°C 
  • PSA: 50.50000 
  • Density: 1.12g/cm3 
  • LogP: 1.92960 

isonicotinaldehyde (4-pyridylmethylene)hydrazone(Cas 6957-22-8) Usage

General Description

Isonicotinaldehyde (4-pyridylmethylene)hydrazone is a chemical compound that is commonly used in medical and biochemical research. It is a hydrazone, a class of organic compounds derived from the reaction of ketones or aldehydes with hydrazine. isonicotinaldehyde (4-pyridylmethylene)hydrazone has been widely studied for its potential use as a chelating agent in the treatment of metal poisoning and as an anti-tumor agent. Additionally, it has been investigated for its antimicrobial properties and as a potential treatment for neurodegenerative diseases such as Alzheimer's. Isonicotinaldehyde (4-pyridylmethylene)hydrazone has also been used in the development of various coordination complexes and metallo-organic compounds with potential applications in catalysis and material science.

InChI:InChI=1/C12H10N4/c1-5-13-6-2-11(1)9-15-16-10-12-3-7-14-8-4-12/h1-10H

6957-22-8 Relevant articles

Selective and reversible adsorption of cationic dyes by mixed ligand Zn(II) coordination polymers synthesized by reactant ratio modulation

Rachuri, Yadagiri,Subhagan, Sreevalsa,Parmar, Bhavesh,Bisht, Kamal Kumar,Suresh, Eringathodi

, p. 898 - 908 (2017)

Dye capture and separation through coord...

Co-crystals of tetrakis-1,2,3,4-(4′-carboxyphenyl)cyclobutane with dipyridyl spacers: Design and serendipity

Kole, Goutam Kumar,Tan, Geok Kheng,Koh, Lip Lin,Vittal, Jagadese J.

, p. 6190 - 6195,6 (2012)

Tetrakis-1,2,3,4-(4′-carboxyphenyl)cyclo...

A Water-Stable Twofold Interpenetrating Microporous MOF for Selective CO2 Adsorption and Separation

Pal, Arun,Chand, Santanu,Das, Madhab C.

, p. 13991 - 13997 (2017)

Self-assembly of bent dicarboxylate link...

Construction of one dimensional Co(II) and Zn(II) coordination polymers based on expanded N,N′-donor ligands

Zahedi, Mansoureh,Shaabani, Behrouz,Aygün, Muhittin,Kazak, Canan

, p. 461 - 468 (2018)

Four new 1-D coordination polymers [Zn(a...

Spontaneous resolution to absolute chiral induction: Pseudo-kagomé type homochiral Zn(II)/Co(II) coordination polymers with achiral precursors

Bisht, Kamal Kumar,Suresh, Eringathodi

, p. 15690 - 15693 (2013)

It is observed that conglomerate crystal...

Synthesis of Highly Stable Porous Metal-Iminodiacetic Acid Gels from A Novel IDA Compound

Chen, Wenjing,Jiang, Yanhong,Ding, Xuesong,Yan, Chaoguo,Han, Baohang

, p. 617 - 623 (2016)

In this work, a novel and simple flexibl...

A new pillared Cd-organic framework as adsorbent of organic dyes and as precursor of CdO nanoparticles

Ghomshehzadeh, Samira Gholamali,Nobakht, Valiollah,Pourreza, Nahid,Mercandelli, Pierluigi,Carlucci, Lucia

, (2020)

A new neutral cadmium-organic framework ...

A luminescent metal-organic framework with pre-designed functionalized ligands as an efficient fluorescence sensing for Fe3+ ions

Farahani, Yeganeh Davoudabadi,Safarifard, Vahid

, p. 428 - 435 (2019)

Metal-organic frameworks are a class of ...

Construction of five dicyanamide based coordination polymers with diverse dimensionality: Synthesis, characterization and photoluminescence study

Das, Anamika,Bhattacharya, Biswajit,Maity, Dilip Kumar,Halder, Arijit,Ghoshal, Debajyoti

, p. 585 - 591 (2016)

A family of dicyanamide bridged compound...

Ruthenium(ii)-catalysed 1,2-selective hydroboration of aldazines

Gunanathan, Chidambaram,Pradhan, Subham,Thiyagarajan, Subramanian

supporting information, p. 7147 - 7151 (2021/08/30)

Herein, an efficient and simple catalyti...

Design, synthesis and biological evaluation of Schiff’s base derivatives as multifunctional agents for the treatment of Alzheimer’s disease

Shi, Jian,Zhou, Yi,Wang, Keren,Ma, Qinge,Wei, Rongrui,Li, Qingfeng,Zhao, Yiyang,Qiao, Zhanpin,Liu, Shuang,Leng, Yumin,Liu, Wenmin,Sang, Zhipei

, p. 624 - 634 (2020/11/30)

A series of Schiff’s base derivatives wa...

6957-22-8 Process route

pyridine-4-carbaldehyde
872-85-5

pyridine-4-carbaldehyde

4-pyridinealdazine
6957-22-8

4-pyridinealdazine

Conditions
Conditions Yield
With hydrazine hydrate; In ethanol; at 20 ℃; for 0.333333h;
92%
With hydrazine hydrate; In methanol; for 3h; Reflux;
90%
With hydrazine hydrate; In ethanol; for 24h; Inert atmosphere;
90%
With hydrazine hydrate; In ethanol; at 20 ℃; for 24h; Inert atmosphere;
87%
With formic acid; hydrazine hydrate; In ethanol; at 20 ℃; for 24h;
86%
With formic acid; hydrazine; In ethanol; water; at 20 ℃; for 1h;
86%
With formic acid; hydrazine; In ethanol; water; at 20 ℃; for 24h;
86%
With formic acid; hydrazine; In ethanol; at 20 ℃; for 24h;
79%
With formic acid; hydrazine; In ethanol; at 20 ℃; for 24h;
79%
With phthaloyldihydrazine; In ethanol; for 1h; Heating;
With hydrazine hydrate;
With hydrazine hydrate;
With sodium hydroxide; hydrazinium sulfate; In water; for 2h;
0.7%
With acetic acid; hydrazine; In ethanol; Reflux;
With hydrazine hydrate; In ethanol; Reflux;
pyridine-4-ylmethylenehydrazine

pyridine-4-ylmethylenehydrazine

4-pyridinealdazine
6957-22-8

4-pyridinealdazine

Conditions
Conditions Yield
With hydrazine hydrate; In ethanol;
70%

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isonicotinaldehyde (4-pyridylmethylene)hydrazone

CAS:6957-22-8

Purity:99%

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