International audienceThe amazing properties of 2D materials are envisioned to revolutionize several domains such as flexible electronics, electrocatalysis, or biosensing. Herein we introduce scanning electrochemical microscopy (SECM) as a tool to investigate molybdenum disulfide in a straightforward fashion, providing localized information regarding the electronic transport within chemical vapor deposition (CVD)-grown crystalline MoS2 single layers having micrometric sizes. Our investigations show that within flakes assemblies some flakes are well electrically interconnected, with no detectable contact resistance, whereas others are not electrically connected at all, independent of the size of the physical contact between them. Overall, th...
The success of isolating small flakes of atomically thin layers through mechanical exfoliation has t...
The success of isolating small flakes of atomically thin layers through mechanical exfoliation has t...
International audience2D materials such as Graphene and graphene oxide (GO) or CVD-Molybdenum Sulfid...
International audienceThe amazing properties of 2D materials are envisioned to revolutionize several...
International audienceThe amazing properties of 2D materials are envisioned to revolutionize several...
International audienceThe amazing properties of 2D materials are envisioned to revolutionize several...
International audience2D materials such as graphene, graphene oxide (GO) or CVD-Molybdenum Sulfide (...
International audience2D materials such as graphene, graphene oxide (GO) or CVD-Molybdenum Sulfide (...
International audience2D materials such as graphene, graphene oxide (GO) or CVD-Molybdenum Sulfide (...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
Understanding the role of macroscopic and atomic defects in the interfacial electron transfer proper...
The success of isolating small flakes of atomically thin layers through mechanical exfoliation has t...
The success of isolating small flakes of atomically thin layers through mechanical exfoliation has t...
International audience2D materials such as Graphene and graphene oxide (GO) or CVD-Molybdenum Sulfid...
International audienceThe amazing properties of 2D materials are envisioned to revolutionize several...
International audienceThe amazing properties of 2D materials are envisioned to revolutionize several...
International audienceThe amazing properties of 2D materials are envisioned to revolutionize several...
International audience2D materials such as graphene, graphene oxide (GO) or CVD-Molybdenum Sulfide (...
International audience2D materials such as graphene, graphene oxide (GO) or CVD-Molybdenum Sulfide (...
International audience2D materials such as graphene, graphene oxide (GO) or CVD-Molybdenum Sulfide (...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
We report a facile approach based on piezoelectric-driven nanotips inside a scanning electron micros...
Understanding the role of macroscopic and atomic defects in the interfacial electron transfer proper...
The success of isolating small flakes of atomically thin layers through mechanical exfoliation has t...
The success of isolating small flakes of atomically thin layers through mechanical exfoliation has t...
International audience2D materials such as Graphene and graphene oxide (GO) or CVD-Molybdenum Sulfid...