33 results on '"Novak, Petr"'
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2. A dual Mössbauer spectrometer for material research, coincidence experiments and nuclear quantum optics
3. Smart Counting Machines for Modular Industry 4.0 Packing Lines
4. High time and energy resolution semi-transparent scintillation detectors for application in [formula omitted] optics and Mössbauer spectroscopy
5. Properties of focusing polycapillary utilized in [formula omitted]Fe Mössbauer spectroscopy
6. Synthesis, crystal structure, 57Fe Mössbauer spectroscopy and magnetic properties of high-spin iron(III) anionic complexes [Fe(azp)2]- (H2azp = 2,2′- dihydroxyazobenzene) with organic cations
7. Utilization of YAP:Ce powder scintillator for 57Fe Mössbauer spectroscopy
8. Performance-limiting factors of graphite in sulfide-based all-solid-state lithium-ion batteries
9. The Digital Twin as a Core Component for Industry 4.0 Smart Production Planning
10. Electrochemistry and morphology of graphite negative electrodes containing silicon as capacity-enhancing electrode additive
11. Multiple redox couples cathode material for Li-ion battery: Lithium chromium phosphate
12. A New Concept of an Air-Electrode Catalyst for Li2O2 Decomposition Using MnO2 Nanosheets on Rechargeable Li-O2 Batteries
13. Electrochemical impedance spectroscopy of a Li–S battery: Part 1. Influence of the electrode and electrolyte compositions on the impedance of symmetric cells
14. Generation of Simulation Models in MATLAB-Simulink Based on AutomationML Plant Description
15. Structural and magnetic properties of the transition metals (TM[dbnd]Co, Ni) and Nb co-doped SrTiO3 thin films
16. In-situ X-ray diffraction studies and magneto-optic Kerr effect on RF sputtered thin films of BaTiO3 and Co, Nb co-doped BaTiO3
17. In situ X-ray diffraction characterisation of Fe0.5TiOPO4 and Cu0.5TiOPO4 as electrode material for sodium-ion batteries
18. Integrating heterogeneous engineering knowledge and tools for efficient industrial simulation model support
19. Ex situ and in situ Raman microscopic investigation of the differences between stoichiometric LiMO2 and high-energy xLi2MnO3·(1–x)LiMO2 (M = Ni, Co, Mn)
20. Electrochemical activation of Li2MnO3 at elevated temperature investigated by in situ Raman microscopy
21. Shrinking annuli mechanism and stage-dependent rate capability of thin-layer graphite electrodes for lithium-ion batteries
22. Oxygen release from high-energy xLi2MnO3·(1 − x)LiMO2 (M = Mn, Ni, Co): Electrochemical, differential electrochemical mass spectrometric, in situ pressure, and in situ temperature characterization
23. Effect of metal ion and ball milling on the electrochemical properties of M0.5TiOPO4 (M = Ni, Cu, Mg)
24. Formation of artificial solid electrolyte interphase by grafting for improving Li-ion intercalation and preventing exfoliation of graphite
25. Continuous flame aerosol synthesis of carbon-coated nano-LiFePO 4 for Li-ion batteries
26. A review of the features and analyses of the solid electrolyte interphase in Li-ion batteries
27. In situ X-ray diffraction study of different graphites in a propylene carbonate based electrolyte at very positive potentials
28. Flexible free-standing carbon nanotube films for model lithium-ion batteries
29. The influence of electrolyte and graphite type on the [formula omitted] intercalation behaviour at high potentials
30. In situ Raman spectroscopy of insertion electrodes for lithium-ion batteries and supercapacitors: First cycle effects
31. Impedance spectroscopy on porous materials: A general model and application to graphite electrodes of lithium-ion batteries
32. Maleic anhydride as an additive to γ-butyrolactone solutions for Li-ion batteries
33. Submucosal mucoid as a late complication after appendectomy—A case report
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