A one-step process to generate single-crystal organic nanowire arrays using a direct printing method (liquid-bridge-mediated nanotransfer molding) that enables the simultaneous synthesis, alignment, and patterning of nanowires from molecular ink solutions is reported. Using this method, many single-crystal organic nanowires can easily be synthesized by self-assembly and crystallization of organic molecules within the nanoscale channels of molds, and these nanowires can then be directly transferred to specific positions on substrates to generate nanowire arrays by a direct printing process. The position of the nanowires on complex structures is easy to adjust, because the mold is movable on the substrates before the polar liquid layer, which...
In recent years, single crystalline, semiconductor nanowires (NWs) have been widely explored as the ...
A new indolocabazole derivative possessing an extended aromatic core and solubilizing long aliphatic...
The fabrication of a highly ordered array of single-crystalline nanostructures prepared from solutio...
A one-step process to generate single-crystal organic nanowire arrays using a direct printing method...
Several techniques for the direct printing of functional materials have been developed to fabricate ...
We fabricated cross-stacked organic p–n nanojunction arrays made of single-crystal 6,13-bis(triisop...
Organic nanowires (ONWs) are flexible, stretchable, and have good electrical properties, and therefo...
Controlled alignment and patterning of individual semiconducting nanowires at a desired position in ...
Ordered arrays of single-crystalline nano- and microwires of GaAs and InP with well-controlled lengt...
DoctorFuture ubiquitous optoelectronics require versatile features, such as the portability, wearabi...
Organic nanowire (NW) transistor arrays with a mobility of as high as 1.26 cm(2).V(-1).S(-1) are fab...
Organic field-effect transistors (OFETs) have been developed over the past few decades due to their ...
Printable electronics offer outstanding potential for novel electronic devices that can be lightweig...
Fabrication of organic field-effect transistors (OFETs) using a high-throughput printing process has...
Poly(9,9-dioctylfluorene) nanowire arrays with pronounced beta-phase were prepared by a one-step fab...
In recent years, single crystalline, semiconductor nanowires (NWs) have been widely explored as the ...
A new indolocabazole derivative possessing an extended aromatic core and solubilizing long aliphatic...
The fabrication of a highly ordered array of single-crystalline nanostructures prepared from solutio...
A one-step process to generate single-crystal organic nanowire arrays using a direct printing method...
Several techniques for the direct printing of functional materials have been developed to fabricate ...
We fabricated cross-stacked organic p–n nanojunction arrays made of single-crystal 6,13-bis(triisop...
Organic nanowires (ONWs) are flexible, stretchable, and have good electrical properties, and therefo...
Controlled alignment and patterning of individual semiconducting nanowires at a desired position in ...
Ordered arrays of single-crystalline nano- and microwires of GaAs and InP with well-controlled lengt...
DoctorFuture ubiquitous optoelectronics require versatile features, such as the portability, wearabi...
Organic nanowire (NW) transistor arrays with a mobility of as high as 1.26 cm(2).V(-1).S(-1) are fab...
Organic field-effect transistors (OFETs) have been developed over the past few decades due to their ...
Printable electronics offer outstanding potential for novel electronic devices that can be lightweig...
Fabrication of organic field-effect transistors (OFETs) using a high-throughput printing process has...
Poly(9,9-dioctylfluorene) nanowire arrays with pronounced beta-phase were prepared by a one-step fab...
In recent years, single crystalline, semiconductor nanowires (NWs) have been widely explored as the ...
A new indolocabazole derivative possessing an extended aromatic core and solubilizing long aliphatic...
The fabrication of a highly ordered array of single-crystalline nanostructures prepared from solutio...