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Applied Physics Letters, ISSN 0003-6951, 11/2004, Volume 85, Issue 22, pp. 5269 - 5271
Journal Article
Journal of Materials Chemistry A, ISSN 2050-7488, 2018, Volume 6, Issue 3, pp. 963 - 971
Journal Article
Journal of materials chemistry. A, Materials for energy and sustainability, ISSN 2050-7488, 2018, Volume 6, Issue 3, pp. 963 - 971
Solar-driven water evaporation assisted by photothermal membranes is considered as one of the sustainable and cost-effective strategies for pure water generation and wastewater treatment... 
Journal Article
Solar energy materials and solar cells, ISSN 0927-0248, 2018, Volume 187, pp. 1 - 8
.... Here, vacuum thermal evaporation deposition of CsPbBr3 perovskite films is developed by dual-source coevaporation of CsBr and PbBr2 precursors... 
Solar cells | Annealing | Inorganic perovskite | Vacuum thermal evaporation | CsPbBr3 films | PHYSICS, APPLIED | FILM | ENERGY & FUELS | DEPOSITION | STABILITY | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | LAYERS | ORGANOMETAL HALIDE PEROVSKITES | PHOTOVOLTAIC CELLS | TEMPERATURES
Journal Article
Chemical Engineering & Technology, ISSN 0930-7516, 07/2019, Volume 42, Issue 7, pp. 1452 - 1457
Simulation results for continuous vacuum evaporation crystallization obtained by Aspen Plus and experimental results for semi... 
Vacuum evaporation crystallization | Simulation | Glycine | Evaporation rate | ENGINEERING, CHEMICAL | Analysis | Chemical properties | Organic chemistry | Crystallization | Evaporation | Vacuum evaporation | Physical properties
Journal Article
International journal of heat and mass transfer, ISSN 0017-9310, 2014, Volume 73, pp. 303 - 317
Journal Article
by Wang, C and Xu, R and Chen, X and Jiang, P and Liu, B
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 03/2019, Volume 131, pp. 31 - 40
Journal Article
Physical Chemistry Chemical Physics, ISSN 1463-9076, 2018, Volume 20, Issue 33, pp. 21262 - 21268
...; however, the general understanding of their evaporation dynamics under vacuum is still lagging... 
PHYSICOCHEMICAL PROPERTIES | PRESSURE | FILMS | CONDUCTIVITY | ENTHALPIES | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | VAPORIZATION | VOLATILITY | VAPOR-DEPOSITION POLYMERIZATION | THERMOGRAVIMETRIC ANALYSIS | MORPHOLOGY
Journal Article
Physical chemistry chemical physics : PCCP, ISSN 1463-9076, 01/2018, Volume 20, Issue 33, pp. 21262 - 21268
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 08/2014, Volume 39, Issue 25, pp. 13156 - 13163
The catalytic properties of Ni-25 at% Al (Ni25Al) nanoparticles fabricated by arc plasma evaporation toward methanol decomposition were studied at temperatures ranging from 513 to 753 K... 
Methanol decomposition | Arc plasma evaporation | Hydrogen production | Ni-Al nanoparticles | THIN-FILMS | ELECTROCHEMISTRY | VACUUM | ACTIVATION | OXIDE | ENERGY & FUELS | SILICA-SUPPORTED CATALYSTS | SURFACE-STRUCTURE | CHEMISTRY, PHYSICAL | NI3AL POWDER | CO OXIDATION | HYDROGEN | INTERMETALLICS | Nanoparticles | Oxides | Hydrogen | Methanol | Phases | Catalysts | Methyl alcohol | Intermetallics | Nickel | Nickel aluminides | Catalysis
Journal Article
Physica status solidi. A, Applications and materials science, ISSN 1862-6300, 2018, Volume 215, Issue 11, pp. 1700862 - n/a
... (0001) Al2O3 (C‐sapphire) by a vacuum thermal evaporation, and effects of the layer thickness and preparation temperature on structural, morphological, optical, and electrical characteristics are investigated with X... 
growth behavior | organic electronics | vacuum thermal evaporation | C8‐BTBT | C8-BTBT | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | CONJUGATED POLYMERS | SEMICONDUCTORS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CRYSTALS | Grain size | Atomic force microscopy | Light irradiation | X-ray diffraction | Evaporation | Substrates | Aluminum oxide | Thickness | Coalescing | Single crystals | Energy gap | Benzothiophene | Sapphire | Electrical resistivity | Static electricity | Vacuum thermal evaporation
Journal Article
Applied thermal engineering, ISSN 1359-4311, 2018, Volume 143, pp. 1079 - 1084
Generating water steam is a significant process for many fields. By combining heat localization and thin-film evaporation, a low-cost high-efficiency solar steam generator is proposed here... 
Graphite micro/nano particles | Thin-film evaporation | Steam generation | Solar energy | GLASS COVER | PROVIDING VACUUM | ENERGY & FUELS | GRAPHENE | INTRINSIC WATER WETTABILITY | DESALINATION | GRAPHITE | ENGINEERING, MECHANICAL | NANOFLUIDS | ONE SUN | STILL PERFORMANCE | STORAGE-SYSTEM | MECHANICS | THERMODYNAMICS | Thin films | Graphene | Nanotubes | Graphite | Energy efficiency | Combustion | Dielectric films | Mechanical engineering | Nanotechnology
Journal Article