Senthilkumaran, Marimuthu’s team published research in Materials Chemistry and Physics in 2020 | 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 2020 ,《Poly(s-triazine) based porous carbon for CO2 sequestration》 appeared in Materials Chemistry and Physics. The author of the article were Senthilkumaran, Marimuthu; Saravanan, Chokalingam; Puthiaraj, Pillaiyar; Rameshkumar, Perumal; Kalaignan, Guruviah Paruthimal; Muthu Mareeswaran, Paulpandian. The article conveys some information:

Nitrogen containing microporous materials are promising candidates for the efficient and selective CO2 capture. Triazine containing polyaminals are the potential precursors for the preparation of porous carbons. The various nitrogen moieties present in the materials are examined by XPS anal. The FE-SEM and HR-TEM images of the materials and N2 sorption profile exhibit abundant microporous structure. Pore size distribution reveals the existence of narrow micropores in the materials. The prepared materials exhibit surface area up to 684 m2/g, microporous surface area up to 441 m2/g and CO2 capture up to 154 mg/g. CO2 isotherm data is well fitted with Langmuir and Freundlich isotherm models. Spontaneity of the CO2 adsorption process are demonstrated by thermodn. parameters. The high CO2/N2 selectivity and considerable CO2/CH4 selectivity of the materials are calculated by initial slope method (Henry′s law). The experimental part of the paper was very detailed, including the reaction process of 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