The forthcoming ubiquitous innovations driven by flexible/wearable electronics and Internet of Things (IoT) have inspired the relentless pursuit of advanced power sources with versatile aesthetics. Here, we demonstrate a new class of solid-state flexible power sources that are fabricated directly on conventional A4 paper using a commercial desktop inkjet printer. A salient feature of the inkjet-printed power sources is their monolithic integration with paper, i.e., they look like inkjet-printed letters or figures that are commonly found in office documents. A supercapacitor (SC), which is composed of activated carbon/carbon nanotubes (CNTs) and an ionic liquid/ultraviolet-cured triacrylate polymer-based solid-state electrolyte, is chosen as...
The all-solid-state graphene-based in-plane micro-supercapacitors are fabricated simply through reli...
Heterostructures constructed from two-dimensional (2D) building blocks have shown promise for field-...
In recent years, much effort have been dedicated to achieve thin, lightweight and even flexible ener...
Abstract The increasing demands to further electrify and digitalize our society set demands for a gr...
Inkjet printing is becoming one of the most efficient micro-manufacturing techniques to fabricate th...
Printing technologies are becoming increasingly popular because they enable the large-scale and low-...
With the rapid development of Internet-of-Things (IoT), it is estimated that a trillion sensors will...
The introduction of paper-based platforms for developing novel energy storage devices such as superc...
The emerging wearable electronics integrated into textiles are posing new challenges both in materia...
We report the functionalization of multiwalled carbon nanotubes (MWCNT) via the 1,3-dipolar [3+2] cy...
Energy harvesting from ambient sources such as light or vibrations is a promising method for powerin...
Despite the extensive studies on printed power sources for user-customized shape-versatile electroni...
Supercapacitors have been regarded as promising power supplies for future electronics due to their h...
Nanotechnology and inkjet-printed flexible electronics, sensor and power management (PMU) nodes fabr...
The fast growth of portable smart electronics and internet of things have greatly stimulated the dem...
The all-solid-state graphene-based in-plane micro-supercapacitors are fabricated simply through reli...
Heterostructures constructed from two-dimensional (2D) building blocks have shown promise for field-...
In recent years, much effort have been dedicated to achieve thin, lightweight and even flexible ener...
Abstract The increasing demands to further electrify and digitalize our society set demands for a gr...
Inkjet printing is becoming one of the most efficient micro-manufacturing techniques to fabricate th...
Printing technologies are becoming increasingly popular because they enable the large-scale and low-...
With the rapid development of Internet-of-Things (IoT), it is estimated that a trillion sensors will...
The introduction of paper-based platforms for developing novel energy storage devices such as superc...
The emerging wearable electronics integrated into textiles are posing new challenges both in materia...
We report the functionalization of multiwalled carbon nanotubes (MWCNT) via the 1,3-dipolar [3+2] cy...
Energy harvesting from ambient sources such as light or vibrations is a promising method for powerin...
Despite the extensive studies on printed power sources for user-customized shape-versatile electroni...
Supercapacitors have been regarded as promising power supplies for future electronics due to their h...
Nanotechnology and inkjet-printed flexible electronics, sensor and power management (PMU) nodes fabr...
The fast growth of portable smart electronics and internet of things have greatly stimulated the dem...
The all-solid-state graphene-based in-plane micro-supercapacitors are fabricated simply through reli...
Heterostructures constructed from two-dimensional (2D) building blocks have shown promise for field-...
In recent years, much effort have been dedicated to achieve thin, lightweight and even flexible ener...