Salimi, Pejman et al. published their research in Renewable Energy in 2019 | CAS: 626-64-2

Pyridin-4-ol (cas: 626-64-2) belongs to pyridine derivatives. Pyridine is diamagnetic and has a diamagnetic susceptibility of âˆ?8.7 × 10âˆ? cm3·molâˆ?.The molecular electric dipole moment is 2.2 debyes. The standard enthalpy of formation is 100.2 kJ·molâˆ? in the liquid phase and 140.4 kJ·molâˆ? in the gas phase. Halopyridines are particularly attractive synthetic building blocks in a variety of cross-coupling methods, including the Suzuki-Miyaura cross-coupling reaction.Recommanded Product: 626-64-2

Magnetic biochar obtained through catalytic pyrolysis of macroalgae: A promising anode material for Li-ion batteries was written by Salimi, Pejman;Norouzi, Omid;Pourhoseini, S. E. M.;Bartocci, Pietro;Tavasoli, Ahmad;Di Maria, Francesco;Pirbazari, S. M.;Bidini, Gianni;Fantozzi, Francesco. And the article was included in Renewable Energy in 2019.Recommanded Product: 626-64-2 This article mentions the following:

In this work, Cladophora glomerata, a harmful seaweed, is converted into an olive-shaped magnetic biochar by a slow pyrolysis process catalyzed by iron. The resultant magnetic biochar has a high surface area of 296.4 m2 g-1 with a carbon-rich structure that makes it suitable to be used as an electrode in Li-ion batteries. The catalytic pyrolysis process showed significant effect on steam reforming, ketonization and deoxygenation and/or denitrogenation reactions. The overall quality of the pyrolysis products increases: the gas contains a higher percentage of hydrogen (up to 22%), while the oil is enriched in furans (with a selectivity of about 14%). The electrochem. behavior of magnetic biochar has been also evaluated, using galvanostatic charge-discharge, cyclic voltammetry (CV), and electrochem. impedance spectroscopy (EIS) analyses. The electrochem. results indicated a higher initial specific discharge capacity (740 mAh g-1) and great cyclic stability for magnetic electrode as compared to the biochar electrode. In the experiment, the researchers used many compounds, for example, Pyridin-4-ol (cas: 626-64-2Recommanded Product: 626-64-2).

Pyridin-4-ol (cas: 626-64-2) belongs to pyridine derivatives. Pyridine is diamagnetic and has a diamagnetic susceptibility of âˆ?8.7 × 10âˆ? cm3·molâˆ?.The molecular electric dipole moment is 2.2 debyes. The standard enthalpy of formation is 100.2 kJ·molâˆ? in the liquid phase and 140.4 kJ·molâˆ? in the gas phase. Halopyridines are particularly attractive synthetic building blocks in a variety of cross-coupling methods, including the Suzuki-Miyaura cross-coupling reaction.Recommanded Product: 626-64-2

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem