Understanding the wear of mineral fillers is crucial for controlling industrial processes, and in the present work, we examine the wear resistance and nanomechanical properties of bare calcite and stearic acid-modified calcite surfaces under dry and humid conditions at the nanoscale. Measurements under different loads allow us to probe the situation in the absence and presence of abrasive wear. The sliding motion is in general characterized by irregular stick-slip events that at higher loads lead to abrasion of the brittle calcite surface. Bare calcite is hydrophilic, and under humid conditions, a thin water layer is present on the surface. This water layer does not affect the friction force. However, it slightly decreases the wear depth an...
The long-term mechanical strength of calcite-bearing rocks is highly dependent on the presence and n...
nm-Range forces acting between calcite surfaces in water affect macroscopic properties of carbonate ...
Nanofluids are proven to be efficient agents for wettability alteration in subsurface applications i...
Understanding the wear of mineral fillers is crucial for controlling industrial processes, and in th...
A fundamental understanding of the interactions between mineral surfaces and amphiphilic surface mod...
Funding Information: This work was funded by the Omya International AG. A.S. is a researcher at Pro2...
A fundamental understanding of the interactions between mineral surfaces and amphiphilic surface mod...
Understanding the complex and dynamic nature of calcite surfaces under ambient conditions is importa...
A profound understanding of the properties of unmodified and saturated fatty acid-modified calcite s...
nm-Range forces acting between calcite surfaces in water affect macroscopic properties of carbonate ...
Wear behavior of freshly cleaved single crystal calcite (CaCO3) was investigated by continuous scann...
Calcite is utilized as a filler mineral in the industries such as plastics, rubber, and paint, to ga...
This work presents an innovative idea to achieve hydrophobicity through anisotropic dissolution of c...
Lateral Force Microscopy (LFM) studies were carried out on cleaved calcite sections in contact with ...
When two mineral surfaces are compressed against each other in aqueous environment, surface forces a...
The long-term mechanical strength of calcite-bearing rocks is highly dependent on the presence and n...
nm-Range forces acting between calcite surfaces in water affect macroscopic properties of carbonate ...
Nanofluids are proven to be efficient agents for wettability alteration in subsurface applications i...
Understanding the wear of mineral fillers is crucial for controlling industrial processes, and in th...
A fundamental understanding of the interactions between mineral surfaces and amphiphilic surface mod...
Funding Information: This work was funded by the Omya International AG. A.S. is a researcher at Pro2...
A fundamental understanding of the interactions between mineral surfaces and amphiphilic surface mod...
Understanding the complex and dynamic nature of calcite surfaces under ambient conditions is importa...
A profound understanding of the properties of unmodified and saturated fatty acid-modified calcite s...
nm-Range forces acting between calcite surfaces in water affect macroscopic properties of carbonate ...
Wear behavior of freshly cleaved single crystal calcite (CaCO3) was investigated by continuous scann...
Calcite is utilized as a filler mineral in the industries such as plastics, rubber, and paint, to ga...
This work presents an innovative idea to achieve hydrophobicity through anisotropic dissolution of c...
Lateral Force Microscopy (LFM) studies were carried out on cleaved calcite sections in contact with ...
When two mineral surfaces are compressed against each other in aqueous environment, surface forces a...
The long-term mechanical strength of calcite-bearing rocks is highly dependent on the presence and n...
nm-Range forces acting between calcite surfaces in water affect macroscopic properties of carbonate ...
Nanofluids are proven to be efficient agents for wettability alteration in subsurface applications i...