In this work, we have developed a contact-printing system to efficiently transfer the bottom-up and top-down semiconductor nanowires (NWs), preserving their as-grown features with a good control over their electronic properties. In the close-loop configuration, the printing system is controlled with parameters such as contact pressure and sliding speed/stroke. Combined with the dry pre-treatment of the receiver substrate, the system prints electronic layers with high NW density (7 NWs/μm for bottom-up ZnO and 3 NWs/μm for top-down Si NWs), NW transfer yield and reproducibility. We observed compactly packed (~115 nm average diameters of NWs, with NW-to-NW spacing ~165 nm) and well-aligned NWs (90% with respect to the printing direction). We ...
Nanowires (NWs) are 1D confined nanostructures; this geometry gives them unique properties that have...
The aim of this thesis work is to develop and investigate a deterministic integration approach based...
Printed electronics has attracted significant interest in recent years due to simple, cost-effective...
In this work, we have developed a contact-printing system to efficiently transfer the bottom-up and ...
Printing is a promising method for the large-scale, high-throughput, and low-cost fabrication of ele...
Resource-efficient manufacturing of electronics is needed to reduce the environmental impact of wast...
Abstract Flexible hybrid electronics (FHE) offers potential for fast computation and communication n...
In recent years, single crystalline, semiconductor nanowires (NWs) have been widely explored as the ...
Large-area electronics, including printable and flexible electronics, is an emerging concept which a...
Contact printed intrinsically flexible inorganic nanomaterials such Si and ZnO nanowires (NWs) have ...
Controlled and uniform assembly of "bottom-up" nanowire (NW) materials with high scalability present...
In recent years, there has been tremendous progress in the research and development of printable ele...
Abstract Aligned large-scale deposition of nanowires grown in a bottom-up manner with high yield is ...
The Printed Electronics (PE) is expected to revolutionise the way electronics will be manufactured i...
DoctorFuture ubiquitous optoelectronics require versatile features, such as the portability, wearabi...
Nanowires (NWs) are 1D confined nanostructures; this geometry gives them unique properties that have...
The aim of this thesis work is to develop and investigate a deterministic integration approach based...
Printed electronics has attracted significant interest in recent years due to simple, cost-effective...
In this work, we have developed a contact-printing system to efficiently transfer the bottom-up and ...
Printing is a promising method for the large-scale, high-throughput, and low-cost fabrication of ele...
Resource-efficient manufacturing of electronics is needed to reduce the environmental impact of wast...
Abstract Flexible hybrid electronics (FHE) offers potential for fast computation and communication n...
In recent years, single crystalline, semiconductor nanowires (NWs) have been widely explored as the ...
Large-area electronics, including printable and flexible electronics, is an emerging concept which a...
Contact printed intrinsically flexible inorganic nanomaterials such Si and ZnO nanowires (NWs) have ...
Controlled and uniform assembly of "bottom-up" nanowire (NW) materials with high scalability present...
In recent years, there has been tremendous progress in the research and development of printable ele...
Abstract Aligned large-scale deposition of nanowires grown in a bottom-up manner with high yield is ...
The Printed Electronics (PE) is expected to revolutionise the way electronics will be manufactured i...
DoctorFuture ubiquitous optoelectronics require versatile features, such as the portability, wearabi...
Nanowires (NWs) are 1D confined nanostructures; this geometry gives them unique properties that have...
The aim of this thesis work is to develop and investigate a deterministic integration approach based...
Printed electronics has attracted significant interest in recent years due to simple, cost-effective...