Organic nanowires (ONWs) are flexible, stretchable, and have good electrical properties, and therefore have great potential for use in next-generation textile and wearable electronics. Analysis of trends in ONWs supports their great potential for various stretchable and flexible electronic applications such as flexible displays and flexible photovoltaics. Numerous methods can be used to prepare ONWs, but the practical industrial application of ONWs has not been achieved because of the lack of reliable techniques for controlling and patterning of individual nanowires. Therefore, an "individually controllable" technique to fabricate ONWs is essential for practical device applications. In this paper, three types of fabrication methods of ONWs ...
We demonstrate a stretched contact-printing technique to assemble one-dimensional nanostructures wit...
ver the past decade, both semi-conductor and metallic nanowires (NWs) have been actively explored as...
Nanowires (NWs) are 1D confined nanostructures; this geometry gives them unique properties that have...
DoctorFuture ubiquitous optoelectronics require versatile features, such as the portability, wearabi...
A one-step process to generate single-crystal organic nanowire arrays using a direct printing method...
Semiconducting inorganic nanowires (NWs), nanotubes and nanofibers have been extensively explored in...
Semiconducting inorganic nanowires (NWs), nanotubes and nanofibers have been extensively explored in...
One-dimensional nanomaterial de-vices of inorganic semiconductorsand functional oxides have been stu...
Controlled alignment and patterning of individual semiconducting nanowires at a desired position in ...
We have developed a one-step method to fabricate large-scale polymer nanowire (PNW) arrays of any or...
Organic semiconductor nanowires were fabricated using conjugated polymer — 14H-benzo[4,5]isoquinolin...
ABSTRACT: We report three representative nanowire (NW) devices for applications in stretchable elect...
This book describes nanowires fabrication and their potential applications, both as standing alone o...
Aligned organic nanowire arrays are grown in situ and patterned via dip coating. By optimizing the s...
Nanowires (NWs) are 1D confined nanostructures; this geometry gives them unique properties that have...
We demonstrate a stretched contact-printing technique to assemble one-dimensional nanostructures wit...
ver the past decade, both semi-conductor and metallic nanowires (NWs) have been actively explored as...
Nanowires (NWs) are 1D confined nanostructures; this geometry gives them unique properties that have...
DoctorFuture ubiquitous optoelectronics require versatile features, such as the portability, wearabi...
A one-step process to generate single-crystal organic nanowire arrays using a direct printing method...
Semiconducting inorganic nanowires (NWs), nanotubes and nanofibers have been extensively explored in...
Semiconducting inorganic nanowires (NWs), nanotubes and nanofibers have been extensively explored in...
One-dimensional nanomaterial de-vices of inorganic semiconductorsand functional oxides have been stu...
Controlled alignment and patterning of individual semiconducting nanowires at a desired position in ...
We have developed a one-step method to fabricate large-scale polymer nanowire (PNW) arrays of any or...
Organic semiconductor nanowires were fabricated using conjugated polymer — 14H-benzo[4,5]isoquinolin...
ABSTRACT: We report three representative nanowire (NW) devices for applications in stretchable elect...
This book describes nanowires fabrication and their potential applications, both as standing alone o...
Aligned organic nanowire arrays are grown in situ and patterned via dip coating. By optimizing the s...
Nanowires (NWs) are 1D confined nanostructures; this geometry gives them unique properties that have...
We demonstrate a stretched contact-printing technique to assemble one-dimensional nanostructures wit...
ver the past decade, both semi-conductor and metallic nanowires (NWs) have been actively explored as...
Nanowires (NWs) are 1D confined nanostructures; this geometry gives them unique properties that have...