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In addition to the literature in the link below, there is a lot of literature about this compound(cis-Dichlorobis(pyridine)platinum(II))Formula: C10H10Cl2N2Pt, illustrating the importance and wide applicability of this compound(15227-42-6).

Diver, Catherine; Lawrance, Geoffrey A. published the article 《Trifluoromethanesulfonato-O complexes of platinum(II) and palladium(II)》. Keywords: trifluoromethanesulfonato palladium platinum complex; hydrolysis kinetics trifluoromethanesulfonato platinum.They researched the compound: cis-Dichlorobis(pyridine)platinum(II)( cas:15227-42-6 ).Formula: C10H10Cl2N2Pt. Aromatic heterocyclic compounds can be divided into two categories: single heterocyclic and fused heterocyclic. In addition, there is a lot of other information about this compound (cas:15227-42-6) here.

Reaction of chloroplatinum(II) and chloropalladium(II) complexes containing amine, pyridine, or phosphine ligands at or above room temperature with anhydrous CF3SO3H gave F3CSO3–O complexes, characterized spectroscopically. The complexes cis-[Pt(NH3)2(OSO2CF3)2], trans-[Pt(NH3)2Cl(OSO2CF3)], Pt(en)Cl(OSO2CF3)], [Pt(dppe)(OSO2CF3)2], [Pt(py)2Cl(OSO2CF3)], [Pt(terpy)(OSO2CF3)][CF3SO3], (terpy = 2,2′:6′,2′-terpyridine), trans-[Pd(NH3)2Cl(OSO2CF3)], [Pd(en)(OSO2CF3)2], [Pd(bpy)(OSO2CF3)2] (bpy = 2,2′-bipyridine), and [Pd(PPh3)2(OSO2CF3)2] were isolated. Aquation reactions of selected complexes showed that F3CSO3- hydrolysis is rapid for complexes of both PtII and PdII. Pt(O3SCF3)2 complexes exhibit 2 consecutive rate processes, with k1/k2 ca. 5, consistent with sequential hydrolysis of both anions. Coordinated CF3SO3- in these complexes may be substituted even by neutral coordinating O-donor solvents.

In addition to the literature in the link below, there is a lot of literature about this compound(cis-Dichlorobis(pyridine)platinum(II))Formula: C10H10Cl2N2Pt, illustrating the importance and wide applicability of this compound(15227-42-6).

Reference:
Tetrahydroisoquinoline – Wikipedia,
1,2,3,4-Tetrahydroisoquinoline | C9H11N – PubChem