Nickerl, GeorgGeorgNickerlLeistner, MatthiasMatthiasLeistnerHelten, StellaStellaHeltenBon, VolodymyrVolodymyrBonSenkovska, IrenaIrenaSenkovskaKaskel, StefanStefanKaskel2022-03-042022-03-042014https://publica.fraunhofer.de/handle/publica/23867810.1039/C3QI00093A2-s2.0-849086160962,2'-Bipyridine-5,5'-dicarboxylic acid (H2bipy) was used for the synthesis of a zirconium based metal-organic framework with the aim to integrate an additional N-donor coordination functionality into the framework. The resulting MOF (UiO-67(bipy)) with a structure isoreticular to UiO-67 (UiO - University of Oslo) has a BET surface area up to 2500 m2 g−1. The chelating bipyridine moiety was used for postsynthetic functionalization of the MOF with different metal salts (MIIXy; M = Cu2+, Ni2+, Co2+; X = Cl−, NO3−, SO42−, acac2−) to give the corresponding metal_salt@UiO-67(bipy) materials. Due to the highly dispersed metal ions, metal_salt@UiO-67(bipy) shows good performance in toxic hydrogen sulfide capture. Especially, the copper loaded samples have high capacities of up to 7.8 wt%.en621671Integration of accessible secondary metal sites into MOFs for H2S removaljournal article