دکتر محمد ژیانی m_zhiani@iut.ac.ir نشانی دفتر دانشگاه صنعتی اصفهان، دانشکده شیمی شماره تماس +98 31 33913263 فکس +98 31 33913263 پست ها و موقعیت های شغلی و سازمانی استاد زمینه های مورد علاقه طراحی، ساخت و ارزیابی انواع پیلهای سوختی دمای پایین (PEMFC، DMFC، DAFC) طراحی، ساخت و ارزیابی الکترولایزرها باتریهای لیتیمی نوع اول ساخت و ارزیابی کاتالیستهای پلاتینی و غیرپلاتینی Dr. Mohammad Zhiani نوع: Journal عنوان Date A novel Ir-Ru-based nanoparticle supported on ordered electrochemically synthesized TiO2-nanotube as a highly active and stable oxygen evolution reaction catalyst for water splitting in acidic media 1402-07 Optimization of Ni-Mo-Coated Stainless Steel as a High-Performance Cathode in Alkaline Water Electrolysis 1401-10 Morphology control of polyaniline nanostructures on the surface of reduced graphene oxide/cotton fabric composite electrode for high-performance wearable supercapacitor application 1401-06 A 3D CFD model of novel flow channel designs based on the serpentine and the parallel design for performance enhancement of PEMFC 1401-04 Ex vivo energy harvesting by a by-pass depletion designed abiotic glucose fuel cell operated with real human blood serum 1400-11 Pd electrodeposition on a novel substrate of reduced graphene oxide/ poly(melem-formaldehyde) nanocomposite as an active and stable catalyst for ethanol electrooxidation in alkaline media 1400-10 A comparative study of Pd/rGO and Pd-Cu/rGO toward electrooxidation of low ethanol concentrations for fuel cell-based breath alcohol analyzer application 1400-08 Effect of the morphology of silver layer on electrical conductivity and electrochemical performance of silver/reduced graphene oxide/cotton fabric composite as a flexible supercapacitor electrode 1400-04 New Strategy Based on Click Reaction for Preparation of Cross-Linked Poly(Benzimidazolium-Imide) as an Anion-Exchange Membrane with Improved Alkaline Stability 1400-02 An efficient textile-based electrode utilizing silver nanoparticles/reduced graphene oxide/cotton fabric composite for high-performance wearable supercapacitors 1399-11