1 day(s) Shipping Method: Fedex, TNT,DHl Application: Huawei MatePad SE 10.1 Size: 240.2 x 159 x 7.9 mm (9.46 x 6.26 x 0.31 in) Weight: 450 g (0.99 lb) Description ***Huawei MatePad SE 10.1"(AGS3K-W20) WiFi Oc...
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Abstract In this study, a ferrate material with a narrow band gap and rapid electron hole separation ability is synthesized for degrading methylene blue from industrial wastewater. Hard ferrite (CoZnFeO4) with octahedral structure is synthesized by solid-phase method from waste ferrous sulfate. The ...
Application: Huawei MatePad SE 10.1 Size: 240.2 x 159 x 7.9 mm (9.46 x 6.26 x 0.31 in) Weight: 450 g (0.99 lb) Description Contact Supplier Description ***Huawei MatePad SE 10.1"(AGS3K-W20) WiFi Octa-core 5100mAh T...
Saravanan, K. K.Department of Electrical and Electronics Engineering, University College of Engineering, Thirukkuvalai, IndiaSiva Karthik, P.Department of Chemistry, University College of Engineering, Panruti, IndiaSpringer USJournal of Materials Science: Materials in Electronics...
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Rohde & Schwarz presents its advanced solutions for power electronics testing an... 29/04/2025 Arvato Systems joins the KI Park e.V. Arvato Systems Joins KI Park e.V. Shaping the future of artificial intelligence together Arvato Systems is joining KI Park to advance the use of Artificial I...
exhibit excellent photocatalytic activity for methylene blue degradation under solar simulator visible light, with a hydrogen production activity higher than that of pristine Ag3PO4. The hydrogen production rate of GCN–Ag3PO4NCs is 44.5 times higher than that of Ag3PO4. Therefore, GCN–Ag3PO4...
This study demonstrates that ZnWO 4 /Ag 3 PO 4 photocatalytic composites can be utilized to degrade contaminants.doi:10.1007/s10854-022-07898-3Mengtian DuanDaoxin WuJialun WuHaixia TongSpringer NatureJournal of Materials Science: Materials in Electronics...
Hua YangState Key Laboratory of Advanced Processing and Recycling of Non-ferrous MetalsSpringer USJournal of Materials Science: Materials in ElectronicsZheng, C.X.; Yang, H. Assembly of Ag3PO4 nanoparticles on rose flower-like Bi2WO6 hierarchical architectures for achieving high photocatalytic ...