The influence of catalyst in reaction 14389-12-9

Compound(14389-12-9)HPLC of Formula: 14389-12-9 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(5-(4-Pyridyl)-1H-tetrazole), if you are interested, you can check out my other related articles.

The chemical properties of alicyclic heterocycles are similar to those of the corresponding chain compounds. Compound: 5-(4-Pyridyl)-1H-tetrazole, is researched, Molecular C6H5N5, CAS is 14389-12-9, about A hexa-nuclear {Cu6(ptz)6} cluster containing five [Cu2N4] units with cycle connecting cycle mode induced by tetrazole-based ligand to modify Keggin anions, the main research direction is copper pyridyltetrazole polymer Keggin molybdophosphate molybdoarsenate polyoxometalate preparation; crystal structure copper pyridyltetrazole polymer Keggin molybdophosphate molybdoarsenate polyoxometalate; cyclic voltammetry copper pyridyltetrazole polymer Keggin molybdophosphate molybdoarsenate polyoxometalate.HPLC of Formula: 14389-12-9.

Two new isostructural 2-dimensional compounds based on hexanuclear [CuI6(ptz)6] clusters and Keggin anions, [CuI6(ptz)6][H3XMo12O40]·2H2O (X = P for 1; As for 2) (ptz = 5-(4-pyridyl)tetrazole), were hydrothermally synthesized. The hexanuclear [CuI6(ptz)6] subunits are constructed from five [Cu2N4] units with a cycle connecting cycle mode and further connected by the ptz to form 1-dimensional chains. These adjacent 1-dimensional chains are further linked by the Keggin anions to construct the intriguing 2-dimensional networks.

Compound(14389-12-9)HPLC of Formula: 14389-12-9 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(5-(4-Pyridyl)-1H-tetrazole), if you are interested, you can check out my other related articles.

Reference:
Chiral nitrogen ligands in late transition metal-catalysed asymmetric synthesis—I. Addressing the problem of ligand lability in rhodium-catalysed hydrosilations,
Nitrogen-Containing Ligands for Asymmetric Homogeneous and Heterogeneous Catalysis