The design and high-throughput manufacturing of thin renewable energy devices with high structural and atomic configurational stability are crucial for the fabrication of green electronics. Yet, this concept is still in its infancy. In this work, we report the extraordinary durability of thin molecular interlayered organic flexible energy devices based on chemically tuned cellulose nanofiber transparent films that outperform glass by decreasing the substrate weight by 50%. The nanofabricated flexible thin film has an exceptionally low thermal coefficient of expansion of 1.8 ppm/K and a stable atomic configuration under a harsh fabrication condition (over 190 °C for an extended period of 5 h). A flexible optoelectronic device using the same ...
Cellulose is a potential source of nano-material not only because it possesses excellent mechanical ...
Flexible optoelectronic technologies are becoming increasingly important with the advent of concepts...
The present work is focused on molecular design and structural optimization of nanocellulose-based f...
The design and high-throughput manufacturing of thin renewable energy devices with high structural a...
Various wearable electronic devices have been developed for extensive outdoor activities. The key me...
Cellulose widely exists in plant tissues. Due to the large pores between the cellulose units, the re...
Substantial progress in flexible or stretchable electronics over the past decade has extensively imp...
Flexible electronics are developing rapidly due to promising applications in displays, sensors, and ...
Substantial progress in flexible or stretchable electronics over the past decade has extensively imp...
Organic electronics is the study of organic materials with electronic functionality and the applicat...
Organic electronics is the study of organic materials with electronic functionality and the applicat...
Organic electronics is the study of organic materials with electronic functionality and the applicat...
The fabrication of self-assembled cellulose nanocrystal (CNC) films of tunable photonic and mechanic...
The recent rapid expansion of thin-film, bendable, and wearable consumer (opto)electronics demands ...
Flexible optoelectronic technologies are becoming increasingly important with the advent of concepts...
Cellulose is a potential source of nano-material not only because it possesses excellent mechanical ...
Flexible optoelectronic technologies are becoming increasingly important with the advent of concepts...
The present work is focused on molecular design and structural optimization of nanocellulose-based f...
The design and high-throughput manufacturing of thin renewable energy devices with high structural a...
Various wearable electronic devices have been developed for extensive outdoor activities. The key me...
Cellulose widely exists in plant tissues. Due to the large pores between the cellulose units, the re...
Substantial progress in flexible or stretchable electronics over the past decade has extensively imp...
Flexible electronics are developing rapidly due to promising applications in displays, sensors, and ...
Substantial progress in flexible or stretchable electronics over the past decade has extensively imp...
Organic electronics is the study of organic materials with electronic functionality and the applicat...
Organic electronics is the study of organic materials with electronic functionality and the applicat...
Organic electronics is the study of organic materials with electronic functionality and the applicat...
The fabrication of self-assembled cellulose nanocrystal (CNC) films of tunable photonic and mechanic...
The recent rapid expansion of thin-film, bendable, and wearable consumer (opto)electronics demands ...
Flexible optoelectronic technologies are becoming increasingly important with the advent of concepts...
Cellulose is a potential source of nano-material not only because it possesses excellent mechanical ...
Flexible optoelectronic technologies are becoming increasingly important with the advent of concepts...
The present work is focused on molecular design and structural optimization of nanocellulose-based f...