Fun Route: New Discovery of 948552-36-1

I hope my short article helps more people learn about this compound(1H-Pyrazole-5-carbaldehyde)Formula: C4H4N2O. Apart from the compound(948552-36-1), you can read my other articles to know other related compounds.

Formula: C4H4N2O. The reaction of aromatic heterocyclic molecules with protons is called protonation. Aromatic heterocycles are more basic than benzene due to the participation of heteroatoms. Compound: 1H-Pyrazole-5-carbaldehyde, is researched, Molecular C4H4N2O, CAS is 948552-36-1, about Alkaline polymers of intrinsic microporosity: high-conduction and low-loss anhydrous proton exchange membranes for energy conversion. Author is Zhou, Shengyang; Guan, Jiayu; Li, Ziqin; Huang, Lei; Zheng, Jifu; Li, Shenghai; Zhang, Suobo.

The development of anhydrous high-temperature proton-exchange membranes (HT-PEMs) combining durable high proton conductivity and modest mech. properties is a huge challenge to macromol. design and engineering. HT-PEMs with microporous structures, constructed by the inefficient chain packing of contorted and rigid polymer backbones with imidazole, are reported for the first time. It is found that the widespread and interconnected microporosity of the polymers endows the HT-PEMs with an excellent phosphoric acid (PA) doping level (ADL) and a corresponding superhigh proton conductivity, as well as suitable mech. properties and PA-retention ability. An outstanding proton conductivity of 330.3 mS cm-1 is obtained at 180 °C under an anhydrous atm., which is superior to those of reported HT-PEMs with far higher ADLs (<260 mS cm-1). The high and stable proton conductivity appears to be related to the interconnected intrinsic microporosity, which increases the PA storage and provides proton-carriers with several highways for fast transport. I hope my short article helps more people learn about this compound(1H-Pyrazole-5-carbaldehyde)Formula: C4H4N2O. Apart from the compound(948552-36-1), you can read my other articles to know other related compounds.

Reference:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem