Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and Temperature-Controlled Aging Treatment

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Last updated 09 novembro 2024
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
WCA dependence on the number of laser shots ablated on the surface
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Tong CHEN, Doctor of Engineering
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Demonstration of an Enhanced “Interconnect Topology”-Based
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Synthesis of Sulfoximines by Copper-Catalyzed Oxidative Coupling
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Diagram of different d80 in variable of nanocollector density
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Wrinkled, Dual-Scale Structures of Diamond-Like Carbon (DLC) for
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Native Chemical Ligation of Highly Hydrophobic Peptides in Ionic
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Synthesis of Sulfoximines by Copper-Catalyzed Oxidative Coupling
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Demonstration of an Enhanced “Interconnect Topology”-Based
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Wrinkled, Dual-Scale Structures of Diamond-Like Carbon (DLC) for
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Effect of side length on wettability and stability of the wetting
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Wettability and Stability of Wetting States for the Surfaces with
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Femtosecond laser-induced periodic oxidization of titanium film
Demonstration of an Enhanced “Interconnect Topology”-Based Superhydrophobic  Surface on 2024 Aluminum Alloy by Femtosecond Laser Ablation and  Temperature-Controlled Aging Treatment
Schematic diagram shows flotation cell and adsorption of

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