Xu, Xiaowen’s team published research in Macromolecular Rapid Communications in 2020 | CAS: 626-05-1

2,6-Dibromopyridine(cas: 626-05-1) belongs to pyridine. Pyridine derivatives lend themselves to many roles in the spirited field of supramolecular chemistry – whether as the ligand backbone of metal-organic polymers or presiding over the key electronic stations of nanodevices. In biochemistry, pyridine-containing cofactors are necessary nutrients on which our lives depend. Reference of 2,6-Dibromopyridine

Reference of 2,6-DibromopyridineIn 2020 ,《Metal Ion Selective Self-Assembly of a Ligand Functionalized Polymer into [1+1] Macrocyclic and Supramolecular Polymer Structures via Metal-Ligand Coordination》 appeared in Macromolecular Rapid Communications. The author of the article were Xu, Xiaowen; Van Guyse, Joachim F. R.; Jerca, Valentin Victor; Hoogenboom, Richard. The article conveys some information:

The design and synthesis of polymer-based metallomacrocycles relying on metal-ligand interactions remain a challenge in the polymer field. Instead of utilizing chem. reactions to synthesize macrocycles, a general approach is proposed to construct metallomacrocyclic structures through supramol. self-assembly of a specific macroligand with suitable transition metal ions. Therefore, a new ditopic macroligand (L) consisting of PEG end-capped with 2,6-bis(1,2,3-triazol-4-yl)pyridine derivatives is prepared via CuAAC “”click”” reaction. Four types of metal (Fe2+, Zn2+, Ni2+, and Cu2+) complexes are obtained by simply mixing a solution of metal ions and L in appropriate concentrations The investigation of the coordination chem. suggests that coordination of L with Cu2+ results in the formation of a [1+1] metallomacrocycle, while the other metal complexes exclusively lead to the formation of linear metallopolymers and/or larger aggregates. This work provides new insights into designing metallomacrocycles and may have potential application in the synthesis of catenanes and other cyclic or cycle-based topol. architectures. After reading the article, we found that the author used 2,6-Dibromopyridine(cas: 626-05-1Reference of 2,6-Dibromopyridine)

2,6-Dibromopyridine(cas: 626-05-1) belongs to pyridine. Pyridine derivatives lend themselves to many roles in the spirited field of supramolecular chemistry – whether as the ligand backbone of metal-organic polymers or presiding over the key electronic stations of nanodevices. In biochemistry, pyridine-containing cofactors are necessary nutrients on which our lives depend. Reference of 2,6-Dibromopyridine

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Mousa, Emad S.’s team published research in Applied Organometallic Chemistry in 2019 | CAS: 141-86-6

2,6-Diaminopyridine(cas: 141-86-6) belongs to pyridine. Pyridine and its simple derivatives are stable and relatively unreactive liquids, with strong penetrating odours that are unpleasant.Recommanded Product: 141-86-6

Recommanded Product: 141-86-6In 2019 ,《Spectroscopic, textural, electrical and magnetic properties of antimicrobial nano Fe(III) Schiff base complex》 appeared in Applied Organometallic Chemistry. The author of the article were Mousa, Emad S.; Mahmoud, Walaa H.. The article conveys some information:

A novel Schiff base ligand (L) was prepared through condensation of 2,6-diaminopyridine and dibenzoyl methane in a 1:1 ratio. This Schiff base ligand was used for complex formation reaction with Fe(III) chloride. The structures of the ligand and its complex were deduced from elemental analyses, mass spectroscopy, 1H NMR, IR, UV-visible, electronic spectra, magnetic moment, molar conductivity measurements, thermogravimetric analyses and x-ray diffraction. The mol. and electronic structures of both ligand and complex were optimized theor. using d. function theory (DFT) method. Moreover, the antimicrobial activities of the prepared compounds were studied and proven against some pathogenic bacteria. The Fe(III) complex had higher biol. activity than that of the free ligand. Proceeding from the collected information, the properties of the complex were further studied. The particle size was determined by dynamic light scattering technique to be 92.59 nm. Textural properties of the nano complex were studied by N2 adsorption to estimate the sp. surface area, pore volume and pore size distribution. The pores in the complex were found in the micropore-mesopore range. Differential scanning calorimetric measurements reveal the existence of four endothermic peaks at 243.8, 308, 339.8 and 380.5 K. Dielec. properties and conductivity were scanned at different frequencies and temperatures The dielec. constant reaches a peak value of 600 at ∼390 K, 30 Hz. A cross-over from the universal dielec. response to the super linear power law of conductivity is reported for this complex at T ≤ 345 K. Finally, the AC-magnetic susceptibility measurements were carried out in the low-temperature region. The complex showed paramagnetic behavior with a slight change in the magnitude of its magnetic moment at T = 244 K. In the experimental materials used by the author, we found 2,6-Diaminopyridine(cas: 141-86-6Recommanded Product: 141-86-6)

2,6-Diaminopyridine(cas: 141-86-6) belongs to pyridine. Pyridine and its simple derivatives are stable and relatively unreactive liquids, with strong penetrating odours that are unpleasant.Recommanded Product: 141-86-6

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Vani, Damera’s team published research in Asian Journal of Organic Chemistry in 2022 | CAS: 103-74-2

2-(2-Hydroxyethyl)pyridine(cas: 103-74-2) belongs to pyridine. The basicity and metallophilic high donor number of these π-deficient systems has long favored them as ligands in metal catalysis. The last decade saw pyridine assume a stronger role as functional group for directed C–H oxidation/activation.COA of Formula: C7H9NO

COA of Formula: C7H9NOIn 2022 ,《Synthesis of Substituted Pyrano[3,4-b]Quinolines by Silver-Catalyzed Regioselective Intramolecular Cyclization of 3-Alkynylquinoline Aldehydes》 appeared in Asian Journal of Organic Chemistry. The author of the article were Vani, Damera; Chahal, Kapil; Preethi, Pagilla; Balasubramanian, Sridhar; Rajender Reddy, Kallu. The article conveys some information:

A novel approach for the synthesis of regioselective pyrano[3,4-b]quinolines from 3-alkynylquinoline aldehydes with alcs. as nucleophiles were elucidated. This protocol showed high generality of functional group and provided the pyrano-annulated products good to excellent yields. This methodol. was adopted a new synthetic strategy to develop the 3-alkynylquinolinealdehydes by using methanol as a C1 source. The results came from multiple reactions, including the reaction of 2-(2-Hydroxyethyl)pyridine(cas: 103-74-2COA of Formula: C7H9NO)

2-(2-Hydroxyethyl)pyridine(cas: 103-74-2) belongs to pyridine. The basicity and metallophilic high donor number of these π-deficient systems has long favored them as ligands in metal catalysis. The last decade saw pyridine assume a stronger role as functional group for directed C–H oxidation/activation.COA of Formula: C7H9NO

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Karumban, Kalai Selvan’s team published research in Inorganica Chimica Acta in 2022 | CAS: 1539-42-0

Bis(pyridin-2-ylmethyl)amine(cas: 1539-42-0) is a secondary amine with two picolyl substituents. The compound is a tridentate ligand in coordination chemistry and commonly used to produce Zn-based chemosensors/probes, such as Zinpry.Application In Synthesis of Bis(pyridin-2-ylmethyl)amine

Application In Synthesis of Bis(pyridin-2-ylmethyl)amineIn 2022 ,《Synthesis, characterization, structural, redox and electrocatalytic proton reduction properties of cobalt polypyridyl complexes》 appeared in Inorganica Chimica Acta. The author of the article were Karumban, Kalai Selvan; Muley, Arabinda; Giri, Bishnubasu; Kumbhakar, Sadananda; Kella, Tatinaidu; Shee, Debaprasad; Maji, Somnath. The article conveys some information:

A monoanionic amido pentadentate ligand bpaqH (2-(bis(pyridin-2-ylmethyl)amino)-N-(quinolin-8-yl)acetamide) and its corresponding cobalt(III) chloro complex [Co(bpaq)Cl]Cl: 1 and aqua derivative [Co(bpaq)(OH2)](ClO4)2: 2 were successfully synthesized and fully characterized by different anal. and spectroscopic techniques such as FT-IR, 1H NMR, UV-vis spectroscopy, ESI mass spectra. The structures of 1 and 2 have been determined by the single-crystal x-ray diffraction. Spectral and redox properties were investigated along with free ligand under electrochem. conditions. Both complexes performed proton reduction activity under soluble, diffusion-limited conditions in acetonitrile with acetic acid as an external proton source with overpotentials of 0.412 V for 1 and 0.394 V for 2. The stability of the catalysts was inspected by the time-dependent UV-vis spectroscopy; 1 and 2 were highly stable in the absence and presence of acetic acid. There was no significant spectral change before and after the controlled potential electrolysis suggesting no change in mol. integrity during electrocatalysis. In the experimental materials used by the author, we found Bis(pyridin-2-ylmethyl)amine(cas: 1539-42-0Application In Synthesis of Bis(pyridin-2-ylmethyl)amine)

Bis(pyridin-2-ylmethyl)amine(cas: 1539-42-0) is a secondary amine with two picolyl substituents. The compound is a tridentate ligand in coordination chemistry and commonly used to produce Zn-based chemosensors/probes, such as Zinpry.Application In Synthesis of Bis(pyridin-2-ylmethyl)amine

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Shoberu, Adedamola’s team published research in Organic Chemistry Frontiers in 2021 | CAS: 3510-66-5

2-Bromo-5-methylpyridine(cas: 3510-66-5) belongs to pyridine. Pyridine and pyridine-derived structures are privileged pharmacophores in medicinal chemistry and an essential functionality for organic chemists. As the prototypical π-deficient heterocycle, pyridine illustrates distinctive chemistry as both substrate and reagent. Computed Properties of C6H6BrN

Computed Properties of C6H6BrNIn 2021 ,《Copper-catalyzed, N-auxiliary group-controlled switchable transannulation/nitration initiated by nitro radicals: selective synthesis of pyridoquinazolones and 3-nitroindoles》 appeared in Organic Chemistry Frontiers. The author of the article were Shoberu, Adedamola; Li, Cheng-Kun; Qian, Hai-Feng; Zou, Jian-Ping. The article conveys some information:

Herein, a strategy based on the judicious choice of N-auxiliaries, which stabilize the substrates as well as allow precise and predictable control over their reactivity with tert-Bu nitrite was described. Thus, the stage was set for the copper-assisted, controllable synthesis of pyridoquinazolones or 3-nitroindoles. Mechanistic studies implicate a switch in the mechanism, in which N-2-pyridylindoles reacted via a nitrosation/transannulation process and N-2-pyridoylindoles underwent an amide bond dissociation/nitration sequence. Notably, the subsequent removal of the auxiliary groups was not required in these reactions. In the experimental materials used by the author, we found 2-Bromo-5-methylpyridine(cas: 3510-66-5Computed Properties of C6H6BrN)

2-Bromo-5-methylpyridine(cas: 3510-66-5) belongs to pyridine. Pyridine and pyridine-derived structures are privileged pharmacophores in medicinal chemistry and an essential functionality for organic chemists. As the prototypical π-deficient heterocycle, pyridine illustrates distinctive chemistry as both substrate and reagent. Computed Properties of C6H6BrN

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Chakraborty, Gargi’s team published research in Journal of Organic Chemistry in 2019 | CAS: 100-48-1

4-Cyanopyridine(cas: 100-48-1) belongs to pyridine. Pyridine and pyridine-derived structures are privileged pharmacophores in medicinal chemistry and an essential functionality for organic chemists. As the prototypical π-deficient heterocycle, pyridine illustrates distinctive chemistry as both substrate and reagent. Category: pyridine-derivatives

Category: pyridine-derivativesIn 2019 ,《Dehydrogenative Synthesis of Quinolines, 2-Aminoquinolines, and Quinazolines Using Singlet Diradical Ni(II)-Catalysts》 appeared in Journal of Organic Chemistry. The author of the article were Chakraborty, Gargi; Sikari, Rina; Das, Siuli; Mondal, Rakesh; Sinha, Suman; Banerjee, Seemika; Paul, Nanda D.. The article conveys some information:

Simple, straightforward, and atom economic methods for the synthesis of quinolines, 2-aminoquinolines, and quinazolines via biomimetic dehydrogenative condensation/coupling reactions, catalyzed by well-defined inexpensive and easy to prepare singlet diradical Ni(II)-catalysts featuring two antiferromagnetically coupled singlet diradical diamine type ligands are described. Various polysubstituted quinolines, 2-aminoquinolines, and quinazolines were synthesized in moderate to good yields from different low-cost and readily accessible starting materials. Several control experiments were carried out to get insight into the reaction mechanism which shows that the nickel and the coordinated diamine ligands participate in a synergistic way during the dehydrogenation of alcs. In the experiment, the researchers used many compounds, for example, 4-Cyanopyridine(cas: 100-48-1Category: pyridine-derivatives)

4-Cyanopyridine(cas: 100-48-1) belongs to pyridine. Pyridine and pyridine-derived structures are privileged pharmacophores in medicinal chemistry and an essential functionality for organic chemists. As the prototypical π-deficient heterocycle, pyridine illustrates distinctive chemistry as both substrate and reagent. Category: pyridine-derivatives

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Xu, Pengcheng’s team published research in Organic & Biomolecular Chemistry in 2021 | CAS: 3510-66-5

2-Bromo-5-methylpyridine(cas: 3510-66-5) belongs to pyridine. Pyridine and pyridine-derived structures are privileged pharmacophores in medicinal chemistry and an essential functionality for organic chemists. As the prototypical π-deficient heterocycle, pyridine illustrates distinctive chemistry as both substrate and reagent. Formula: C6H6BrN

Formula: C6H6BrNIn 2021 ,《Palladium-catalyzed dearomative cyclocarbonylation of allyl alcohol for the synthesis of quinolizinones》 appeared in Organic & Biomolecular Chemistry. The author of the article were Xu, Pengcheng; Qian, Bo; Qi, Zaojuan; Gao, Bao; Hu, Bin; Huang, Hanmin. The article conveys some information:

An approach for the synthesis of quinolizinone I (R = H, 6-Me, 7-F, etc.; R1 = H, Me, Ph; R2 = H, Me, pentyl; R3 = H, Me; X = N, CH) with potential bioactivity has been developed via palladium-catalytic dearomative cyclocarbonylation of allyl alc. R4C(R1)=C(R2)CH(R3)OH (R4 = pyridin-2-yl, 5-fluoropyridin-2-yl, pyrazin-2-yl, etc.). Diverse quinolizinone compounds I could be attained with good efficiencies. A feasible reaction pathway could be a successive procedure of allylation, dearomatization, CO insertion and the Heck reaction. In the experiment, the researchers used many compounds, for example, 2-Bromo-5-methylpyridine(cas: 3510-66-5Formula: C6H6BrN)

2-Bromo-5-methylpyridine(cas: 3510-66-5) belongs to pyridine. Pyridine and pyridine-derived structures are privileged pharmacophores in medicinal chemistry and an essential functionality for organic chemists. As the prototypical π-deficient heterocycle, pyridine illustrates distinctive chemistry as both substrate and reagent. Formula: C6H6BrN

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Xu, Xiaowen’s team published research in Macromolecular Rapid Communications in 2020 | CAS: 626-05-1

2,6-Dibromopyridine(cas: 626-05-1) belongs to pyridine. Pyridines, quinolines, and isoquinolines have found a function in almost all aspects of organic chemistry. Pyridine has found use as a solvent, base, ligand, functional group, and molecular scaffold. As structural elements, these moieties are potent electron-deficient groups, metal-directing functionalities, fluorophores, and medicinally important pharmacophores. COA of Formula: C5H3Br2N

COA of Formula: C5H3Br2NIn 2020 ,《Self-Healing Metallo-Supramolecular Hydrogel Based on Specific Ni2+ Coordination Interactions of Poly(ethylene glycol) with Bistriazole Pyridine Ligands in the Main Chain》 was published in Macromolecular Rapid Communications. The article was written by Xu, Xiaowen; Jerca, Valentin Victor; Hoogenboom, Richard. The article contains the following contents:

In this study, a supramol. hydrogel formed by incorporating the 2,6-bis(1,2,3-triazol-4-yl)-pyridine (btp) ligand in the backbone of a polymer prepared by copper(I)-catalyzed alkyne-azide cycloaddition (CuAAC) “”click”” polyaddition reaction of 2,6-diethynylpyridine and diazido-poly(ethylene glycol) is reported. The hydrogelation is selectively triggered by the addition of Ni2+ ions to aqueous copolymer solutions The gelation and rheol. properties could be tuned by the change of metal to ligand ratio and polymer concentration Interestingly, the hydrogel exhibits a fast (within 2 min) and excellent repeatable autonomic healing capacity without external stimuli. This self-healing behavior may find potential applications for the repairing of metal coatings, in the future. The experimental process involved the reaction of 2,6-Dibromopyridine(cas: 626-05-1COA of Formula: C5H3Br2N)

2,6-Dibromopyridine(cas: 626-05-1) belongs to pyridine. Pyridines, quinolines, and isoquinolines have found a function in almost all aspects of organic chemistry. Pyridine has found use as a solvent, base, ligand, functional group, and molecular scaffold. As structural elements, these moieties are potent electron-deficient groups, metal-directing functionalities, fluorophores, and medicinally important pharmacophores. COA of Formula: C5H3Br2N

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Rotas, Georgios’s team published research in Chemistry – A European Journal in 2020 | CAS: 2510-22-7

4-Ethynylpyridine(cas: 2510-22-7) belongs to pyridine. Pyridines, quinolines, and isoquinolines have found a function in almost all aspects of organic chemistry. Pyridine has found use as a solvent, base, ligand, functional group, and molecular scaffold. As structural elements, these moieties are potent electron-deficient groups, metal-directing functionalities, fluorophores, and medicinally important pharmacophores. Formula: C7H5N

Formula: C7H5NIn 2020 ,《Preparation, Photophysical and Electrochemical Evaluation of an Azaborondipyrromethene/Zinc Porphyrin/Graphene Supramolecular Nanoensemble》 was published in Chemistry – A European Journal. The article was written by Rotas, Georgios; Thomas, Michael B.; Canton-Vitoria, Ruben; D’Souza, Francis; Tagmatarchis, Nikos. The article contains the following contents:

The preparation of an entirely supramol., multichromophoric azaborondipyrromethene (ABDP)/zinc tetraphenylporphyrin (ZnTPP)/exfoliated graphene (GR) nanoensemble was accomplished. The ABDP derivative bears glycol chains for enhancing solubility and a pyridine functionality for allowing coordination with ZnTPP. The ABDP/ZnTPP/GR nanoensemble was characterized in terms of morphol. and composition by using complementary microscopy imaging, thermogravimetric anal., Raman as well as steady-state and time-resolved absorption and emission spectroscopy. The photophys. and electrochem. assessment of ABDP/ZnTPP/GR as well as the binding properties of the ABDP/ZnTPP complex, employed as a reference, are presented. Energy and electron transfer events were observed in ABDP/ZnTPP upon photoexcitation. However, in the case of ABDP/ZnTPP/GR, the graphene-induced aggregation of the chromophores alters their electronic interactions, enhancing the energy/electron transfer process between them. In the experimental materials used by the author, we found 4-Ethynylpyridine(cas: 2510-22-7Formula: C7H5N)

4-Ethynylpyridine(cas: 2510-22-7) belongs to pyridine. Pyridines, quinolines, and isoquinolines have found a function in almost all aspects of organic chemistry. Pyridine has found use as a solvent, base, ligand, functional group, and molecular scaffold. As structural elements, these moieties are potent electron-deficient groups, metal-directing functionalities, fluorophores, and medicinally important pharmacophores. Formula: C7H5N

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Shayapov, Vladimir R.’s team published research in New Journal of Chemistry in 2019 | CAS: 3510-66-5

2-Bromo-5-methylpyridine(cas: 3510-66-5) belongs to pyridine. Pyridines, quinolines, and isoquinolines have found a function in almost all aspects of organic chemistry. Pyridine has found use as a solvent, base, ligand, functional group, and molecular scaffold. As structural elements, these moieties are potent electron-deficient groups, metal-directing functionalities, fluorophores, and medicinally important pharmacophores. SDS of cas: 3510-66-5

SDS of cas: 3510-66-5In 2019 ,《Thermochromism of bromotellurates(IV): experimental insights》 was published in New Journal of Chemistry. The article was written by Shayapov, Vladimir R.; Usoltsev, Andrey N.; Adonin, Sergey A.; Sokolov, Maxim N.; Samsonenko, Denis G.; Fedin, Vladimir P.. The article contains the following contents:

Thermally induced changes in optical properties (thermochromism) in an extended series of 16 bromotellurate(IV) complexes (TeBr6·substituted-pyridinium) were investigated; regularities valid for this class of compounds were established. In the experiment, the researchers used 2-Bromo-5-methylpyridine(cas: 3510-66-5SDS of cas: 3510-66-5)

2-Bromo-5-methylpyridine(cas: 3510-66-5) belongs to pyridine. Pyridines, quinolines, and isoquinolines have found a function in almost all aspects of organic chemistry. Pyridine has found use as a solvent, base, ligand, functional group, and molecular scaffold. As structural elements, these moieties are potent electron-deficient groups, metal-directing functionalities, fluorophores, and medicinally important pharmacophores. SDS of cas: 3510-66-5

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem