Boosting H2storage capability of Er þ3 manganite by adding CuO andg-C3N4in the form of a fourcomponent nanocomposite

نویسندگانرضا محصل,فایزه صوفیوند,Yamamah Jawad BahrAluloom,Merzah Kareem Imran,مهدی شبانی نوش آبادی,مسعود صلواتی
نشریهInternational Journal of Hydrogen Energy
شماره صفحات10955
شماره مجلد48
ضریب تاثیر (IF)ثبت نشده
نوع مقالهFull Paper
تاریخ انتشار2022-12-31
رتبه نشریهعلمی - پژوهشی
نوع نشریهالکترونیکی
کشور محل چاپایران
نمایه نشریهSCOPUS ,JCR

چکیده مقاله

Herein, the as-prepared ErMnO3/ErMn2O5/CuO/g-C3N4nanocomposite is used for H2storage. This product is synthesized during two steps: in-situ synthesis of ErMnO3/ErMn2O5/ CuO (NC-1), and adding g-C3N4 to prepare ErMnO3/ErMn2O5/CuO/g-C3N4 nanocomposite (NC-2). ErMnO3 emerges in the form of ErMnO3/ErMn2O5 (EMO/EMMO) at calcination temperatures<1200 C. Two-dimensional structure of EMO plays a substrate for deposition of EMMO, CuO and g-C3N4. The results show that presence of CuO has no effect on the optical property of EMO/EMMO while adding g-C3N4affects it and of course the band gap increases by agglomeration of the particles deposited on the EMO. Changing the magnetic properties in every change-step is notable. EMO represents a ferromagnetism characteristic that is altered to paramagnetic when NC-1 is prepared, and NC-2 presents a ferromagnetism behavior. Furthermore, the results show that CuO and g-C3N4 are used as boosters to increase H2storage capacity of EMO/EMMO.

tags: Hydrogen storage Nanostructures Rare-earth perovskite ErMnO3/ErMn2O5/CuO/g-C3N4 Nanocomposite