Metallic molybdenum disulfide (MoS2), e.g., 1T phase, is touted as a highly promising material for energy storage that already displays a great capacitive performance. However, due to its tendency to aggregate and restack, it remains a formidable challenge to assemble a high-performance electrode without scrambling the intrinsic structure. Here, we report an electrohydrodynamic-assisted fabrication of 3D crumpled MoS2 (c-MoS2) and its formation of an additive-free stable ink for scalable inkjet printing. The 3D c-MoS2 powders exhibited a high concentration of metallic 1T phase and an ultrathin structure. The aggregation-resistant properties of the 3D crumpled particles endow the electrodes with open space for electrolyte ion transport. Impo...
Construction of flexible electrochemical devices for energy storage and generation is of utmost impo...
With the rapid development of Internet-of-Things (IoT), it is estimated that a trillion sensors will...
Heterostructures constructed from two-dimensional (2D) building blocks have shown promise for field-...
Metallic molybdenum disulfide (MoS2), e.g., 1T phase, is touted as a highly promising material for e...
This paper presents a new and facile method to prepare molybdenum disulfide (MoS₂)/graphene composit...
The 3D-printing technology offers an innovative approach to develop energy storage devices because o...
Inkjet printing is considered as a promising technique for flexible electronics fabrication owing to...
While all reports on supercapacitors are based on electrodes that are fabricated either using expens...
Two-dimensional molybdenum disulfide (MoS2) nanosheets have emerged as a promising material for tran...
The construction of flexible electrochemical devices for energy storage and generation is of utmost ...
Full advantage of stretchable electronic devices can be taken when utilizing an intrinsically stretc...
In the past few decades, there has been a tremendous ongoing effort to understand the nature of nano...
A simple and efficient inkjet printing technology is developed for molybdenum disulfide (MoS2), one ...
Scalable fabrication of high-rate micro-supercapacitors (MSCs) is highly desired for on-chip integra...
Multilayered 1T-MoS2 nanosheets are desired as an electrode material for supercapacitors. There is n...
Construction of flexible electrochemical devices for energy storage and generation is of utmost impo...
With the rapid development of Internet-of-Things (IoT), it is estimated that a trillion sensors will...
Heterostructures constructed from two-dimensional (2D) building blocks have shown promise for field-...
Metallic molybdenum disulfide (MoS2), e.g., 1T phase, is touted as a highly promising material for e...
This paper presents a new and facile method to prepare molybdenum disulfide (MoS₂)/graphene composit...
The 3D-printing technology offers an innovative approach to develop energy storage devices because o...
Inkjet printing is considered as a promising technique for flexible electronics fabrication owing to...
While all reports on supercapacitors are based on electrodes that are fabricated either using expens...
Two-dimensional molybdenum disulfide (MoS2) nanosheets have emerged as a promising material for tran...
The construction of flexible electrochemical devices for energy storage and generation is of utmost ...
Full advantage of stretchable electronic devices can be taken when utilizing an intrinsically stretc...
In the past few decades, there has been a tremendous ongoing effort to understand the nature of nano...
A simple and efficient inkjet printing technology is developed for molybdenum disulfide (MoS2), one ...
Scalable fabrication of high-rate micro-supercapacitors (MSCs) is highly desired for on-chip integra...
Multilayered 1T-MoS2 nanosheets are desired as an electrode material for supercapacitors. There is n...
Construction of flexible electrochemical devices for energy storage and generation is of utmost impo...
With the rapid development of Internet-of-Things (IoT), it is estimated that a trillion sensors will...
Heterostructures constructed from two-dimensional (2D) building blocks have shown promise for field-...