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SO2 capture enhancement in NU-1000 by the incorporation of a ruthenium gallate organometallic complex
The new material [RuGa]@NU-1000 incorporates Ru and Ga in 1.2 and 1.8 wt% respectively (molar ratio 1 : 2). It stems from the grafting of the heterobimetallic ruthenium gallate complex, [MeRu(η6-C6H6)(PPh3)2][GaMe2Cl2] into the MOF material NU-1000. [RuGa]@NU-1000 shows enhanced adsorption of SO2, s...
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Published in: | CrystEngComm 2021-11, Vol.23 (42), p.7479-7484 |
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creator | Jorge García Ponce Díaz-Ramírez, Mariana L Gorla, Saidulu Navarathna, Chanaka Sanchez-Lecuona, Gabriela Donnadieu, Bruno Ibarra, Ilich A Montiel-Palma, Virginia |
description | The new material [RuGa]@NU-1000 incorporates Ru and Ga in 1.2 and 1.8 wt% respectively (molar ratio 1 : 2). It stems from the grafting of the heterobimetallic ruthenium gallate complex, [MeRu(η6-C6H6)(PPh3)2][GaMe2Cl2] into the MOF material NU-1000. [RuGa]@NU-1000 shows enhanced adsorption of SO2, specially at low pressures (10−3 bar) even when compared with other materials employing more expensive precious metals. Additionally, [RuGa]@NU-1000 samples need not be exposed to such harsh conditions for reactivation as they retain their adsorption properties after several cycles and preserve their porosity and structure. Thus, [RuGa]@NU-1000 is an excellent, selective material suitable for detection and precise quantification of SO2, with a lower cost compared to other MOFs incorporating precious metals. |
doi_str_mv | 10.1039/d1ce01076j |
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It stems from the grafting of the heterobimetallic ruthenium gallate complex, [MeRu(η6-C6H6)(PPh3)2][GaMe2Cl2] into the MOF material NU-1000. [RuGa]@NU-1000 shows enhanced adsorption of SO2, specially at low pressures (10−3 bar) even when compared with other materials employing more expensive precious metals. Additionally, [RuGa]@NU-1000 samples need not be exposed to such harsh conditions for reactivation as they retain their adsorption properties after several cycles and preserve their porosity and structure. Thus, [RuGa]@NU-1000 is an excellent, selective material suitable for detection and precise quantification of SO2, with a lower cost compared to other MOFs incorporating precious metals.</abstract><cop>Cambridge</cop><pub>Royal Society of Chemistry</pub><doi>10.1039/d1ce01076j</doi><tpages>6</tpages></addata></record> |
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subjects | Adsorption Metal-organic frameworks Noble metals Precious metals Ruthenium Sulfur dioxide recovery |
title | SO2 capture enhancement in NU-1000 by the incorporation of a ruthenium gallate organometallic complex |
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