Electronic Resource

Successful amino-grafting functionalization of MIL-53(Al) through impulse dielectric barrier discharge plasma for hydrogen storage

التفاصيل البيبلوغرافية
العنوان: Successful amino-grafting functionalization of MIL-53(Al) through impulse dielectric barrier discharge plasma for hydrogen storage
المؤلفون: Agence Nationale de la Recherche (France), European Commission, Région Grand Est (France), Najah, Aymane [0000-0002-7545-8388], Jean-Marie-Desiree, R. [0000-0002-1882-9138], Canevesi, Rafael L. S. [0000-0001-9076-1265], Noël, Cédric [0000-0001-8651-1423], Izquierdo Pantoja, María Teresa [0000-0002-2408-2528], Celzard, Alain [0000-0003-0073-9545], Fierro, Vanessa [0000-0001-7081-3697], De Poucques, L. [0000-0001-5707-5490], Henrion, Gérard [0000-0002-8963-6472], Cuynet, Stephane [0000-0002-0726-6093], Najah, Aymane [aymane.najah@univ-orleans.fr], Najah, Aymane, Jean-Marie-Desiree, R., Boivin, Dimitri, Canevesi, Rafael L. S., Noël, Cédric, Izquierdo Pantoja, María Teresa, Celzard, Alain, Fierro, Vanessa, De Poucques, L., Henrion, Gérard, Cuynet, Stephane
بيانات النشر: Elsevier 2024-02-14
نوع الوثيقة: Electronic Resource
مستخلص: The present study investigates the functionalization of a commercial Metal-Organic Framework (MOF) named “MIL-53(Al)” using an NH3 impulse dielectric barrier discharge (IDBD) plasma treatment. The main objective of this research is to assess the efficacy of the IDBD treatment in grafting nitrogenous groups onto the MOF's organic ligand. Additionally, the impact of the plasma functionalization on the hydrogen adsorption capacities of the “MIL-53(Al)” after IDBD treatment is also studied. In order to accomplish these objectives, plasma diagnostics and comprehensive material characterization techniques are utilized. Structural and thermal analysis by HT-XRD and TGA-MS respectively, indicate the excellent thermal and chemical stability of the material against high temperatures and ammonia. Chemical analysis of the materials by XPS shows that the IDBD treatment effectively functionalizes the MIL-53(Al) by substituting a carbon with a nitrogen within the organic ligand. Finally, the analysis of the hydrogen adsorption capacities at 1 bar and 25 °C reveals that the amount of hydrogen stored in the MIL-53(Al) treated by IDBD is significantly higher. Specifically, the amount of hydrogen stored surpassed the untreated MIL-53(Al) by approximately 50%.
مصطلحات الفهرس: Plasma functionalization, IDBD, MIL-53(Al), NH3, Hydrogen storage, artículo
URL: http://hdl.handle.net/10261/354052
Postprint
Najah, Aymane; Jean-Marie-Desiree, R.; Boivin, Dimitri; Canevesi, Rafael L. S.; Noël, Cédric; Izquierdo Pantoja, María Teresa; Celzard, Alain; Fierro, Vanessa; De Poucques, L.; Henrion, Gérard; Cuynet, Stephane; 2024; Supporting information: Successful amino-grafting functionalization of MIL-53(Al) through impulse dielectric barrier discharge plasma for hydrogen storage [Dataset]; Elsevier; https://doi.org/10.1016/j.ijhydene.2024.02.157
http://dx.doi.org/10.1016/j.ijhydene.2024.02.157
Sí
الاتاحة: Open access content. Open access content
https://creativecommons.org/licenses/by-nc-nd/4.0
embargoedAccess
ملاحظة: English
Other Numbers: CTK oai:digital.csic.es:10261/354052
International Journal of Hydrogen Energy 59: 1014-1022 (2024)
0360-3199
10.1016/j.ijhydene.2024.02.157
1431967997
المصدر المساهم: CSIC
From OAIster®, provided by the OCLC Cooperative.
رقم الانضمام: edsoai.on1431967997
قاعدة البيانات: OAIster