300 results on '"Motola, Martin"'
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2. Two-Dimensional Carbon Graphenylene
3. Innovative advances and challenges in solid oxide electrolysis cells: Exploring surface segregation dynamics in perovskite electrodes
4. A critical investigation of the effect of silver migration at the silver | alumina scandia doped zirconia electrolyte interface in solid oxide fuel cell conditions
5. Blooming microflowers: Shaping TiO2 nanostructures via anodization in metal chloride-based electrolytes
6. Towards highly dense electrolytes at lower sintering temperature (∼1200 °C): Optimization strategies for BaCe0.7Zr0.1CuxY0.2-xO3-δ in SOFCs
7. From concept to commercialization: A review of tubular solid oxide fuel cell technology
8. Advancements in zinc oxide nanomaterials: Synthesis, properties, and diverse applications
9. Navigating the future of solid oxide fuel cell: Comprehensive insights into fuel electrode related degradation mechanisms and mitigation strategies
10. Two-Dimensional Carbon Graphenylene
11. Evaluation of highly conductive cermet cathodes synthesized with organic chelating agents and sintered at low temperatures for IT-SOFCs
12. Current and further trajectories in designing functional materials for solid oxide electrochemical cells: A review of other reviews
13. Harnessing bio-based chelating agents for sustainable synthesis of AgNPs: Evaluating their inherent attributes and antimicrobial potency in conjunction with honey
14. Metallic nanoparticles and photosynthesis organisms: Comprehensive review from the ecological perspective
15. Nanomaterials for advanced energy applications: Recent advancements and future trends
16. Polymer-supported nanomaterials for photodegradation: Unraveling the methylene blue menace
17. Integrating 1D/2D nanostructure based on Ni–Co-oxalate for energy storage applications
18. Theoretical and experimental explored tailored hybrid H+/O2– ions conduction: Bridged for high performance fuel cell and water electrolysis
19. Recent advances in microstructural control via thermal spraying for solid oxide fuel cells
20. Advancements in two-dimensional materials as anodes for lithium-ion batteries: Exploring composition-structure-property relationships emerging trends, and future perspective
21. Synergistic role of Biomolecules and Bio-chelating agents in the sustainable development of an efficient BaCe0.97M0.03O3-δ (M = Sm, Gd) perovskite electrolyte for IT-SOFC
22. Versatile application of BiVO4/TiO2 S-scheme photocatalyst: Photocatalytic CO2 and Cr(VI) reduction
23. Intrinsic properties of anodic TiO2 nanotube layers: In-situ XRD annealing of TiO2 nanotube layers
24. Garnet/polymer solid electrolytes for high-performance solid-state lithium metal batteries: The role of amorphous Li2O2
25. Proton-conducting solid oxide electrolysis cells: Relationship of composition-structure-property, their challenges, and prospects
26. Design of efficient and durable symmetrical protonic ceramic fuel cells at intermediate temperatures via B-site doping of Ni in BaCe0.56Zr0.2Ni0.04Y0.2O3–δ
27. Synthesis of Yb and Sc stabilized zirconia electrolyte (Yb0.12Sc0.08Zr0.8O2–δ) for intermediate temperature SOFCs: Microstructural and electrical properties
28. Current overview and future perspective in fungal biorecovery of metals from secondary sources
29. New insights into the mechanism of coupled photocatalysis and Fenton-based processes using Fe surface-modified TiO2 nanotube layers: The case study of caffeine degradation
30. Transcriptomic hallmarks of in vitro TiO2 nanotubes toxicity in Chlamydomonas reinhardtii
31. Composite polymer electrolyte incorporating WO3 nanofillers with enhanced performance for dendrite-free solid-state lithium battery
32. Carbon Nanostructures Functionalization for Air Filtration and Purification
33. Nanostructured multi-layer MgF2/ITO coatings prepared via e-beam evaporation for efficient electromagnetic interference shielding performance
34. Fe3O4-decorated MXene for the effective removal of 133Ba and 137Cs: synthesis, characterization, and optimization via response surface methodology (RSM).
35. Critical comparison of aerogel TiO2 and P25 nanopowders: Cytotoxic properties, photocatalytic activity and photoinduced antimicrobial/antibiofilm performance
36. Recent progress of perovskite-based electrolyte materials for solid oxide fuel cells and performance optimizing strategies for energy storage applications
37. Recent advancements, doping strategies and the future perspective of perovskite-based solid oxide fuel cells for energy conversion
38. Facile synthesis of WO3 fibers via centrifugal spinning as an efficient UV- and VIS-light-driven photocatalyst
39. 2D MoTe2 nanosheets by atomic layer deposition: Excellent photo- electrocatalytic properties
40. Anodic TiO2 nanotube walls reconstructed: Inner wall replaced by ALD TiO2 coating
41. Enhanced visible-light photocatalytic degradation of organic pollutants using fibrous silica titania and Ti3AlC2 catalysts for sustainable wastewater treatment.
42. 2D TiO2 Nanosheets Decorated Via Sphere‐Like BiVO4: A Promising Non‐Toxic Material for Liquid Phase Photocatalysis and Bacterial Eradication.
43. Intrinsic properties of high-aspect ratio single- and double-wall anodic TiO2 nanotube layers annealed at different temperatures
44. Complex cytotoxicity mechanism of bundles formed from self-organised 1-D anodic TiO2 nanotubes layers
45. Exploring next-generation X(NO3)Y (X = Na+, K+, Sr2+, Ag+; Y=1, 2) electrolytes for enhanced TiO2 nanotube hydrogen generation
46. Ti3+ doped anodic single-wall TiO2 nanotubes as highly efficient photocatalyst
47. Structural transformation of Ag3PO4 and Ag3PO4/TiO2 induced by visible light and Cl− ions: its impact on their photocatalytic, antimicrobial, and antifungal performance
48. Controversial mechanism of simultaneous photocatalysis and Fenton-based processes: additional effect or synergy?
49. Fe3O4-Decorated MXene for Effective Removal of 133Ba and 137Cs: Synthesis, Characterization, and Optimization via Response Surface Methodology (RSM)
50. Highly Active Interfacial Sites in SFT‐SnO2 Heterojunction Electrolyte for Enhanced Fuel Cell Performance via Engineered Energy Bands: Envisioned Theoretically and Experimentally.
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