The self-assembly of two-dimensional (2D) nanomaterials, an emerging research area, still remains largely unexplored. The strong interlayer attraction between 2D nanosheets leads to face-to-face stacking rather than edge-to-edge coupling. We demonstrate, for the first time, how one can induce and control an edge-to-edge self-assembly process for 2D nanomaterials. The extremely weak van der Waals coupling and strong anisotropy of ReS<sub>2</sub> allow us to realize an oriented self-assembly (OSA) process. The aspect ratio of the resulting ReS<sub>2</sub> nanoscrolls can be well controlled. In addition, we perform simulations to further explain and confirm the OSA process, demonstrating its great potential to be expanded as a general edge-to-...
The spontaneous organization of semiconductor nanoparticles into uniform pairs of parallel nanorods ...
International audienceTwo-dimensional (2D) self-assembly (SA) is an efficient strategy to organize b...
Self-assembly is a powerful approach to making new superstructures and high-level hierarchical struc...
International audienceSemi-conducting nanoplatelets are two-dimensional nanoparticles whose thicknes...
Two-dimensional (2D) nanomaterials are attracting increasing research interest because of their uniq...
Two-dimensional (2D) composite materials have gained much interest, and their synthesis and characte...
Nanoscale shape engineering is an essential requirement for the practical use of 2D materials, aimin...
Self-assembled mechanical instabilities can offer a new technology roadmap for micro/nanopatterns of...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
The development of science and technology of advanced materials using nanoscale units can be conduct...
Two-dimensional (2D) materials are a key target for many applications in the modern day. Self-assemb...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
Copyright © 2019 American Chemical Society.The self-assembly of nanoparticles, a process whereby nan...
Established less than a decade ago, the fascinating field of two-dimensional (2D) soft materials is ...
Self-assembly of an alkylated diacetylene derivative is spatially confined via in situ scanning tunn...
The spontaneous organization of semiconductor nanoparticles into uniform pairs of parallel nanorods ...
International audienceTwo-dimensional (2D) self-assembly (SA) is an efficient strategy to organize b...
Self-assembly is a powerful approach to making new superstructures and high-level hierarchical struc...
International audienceSemi-conducting nanoplatelets are two-dimensional nanoparticles whose thicknes...
Two-dimensional (2D) nanomaterials are attracting increasing research interest because of their uniq...
Two-dimensional (2D) composite materials have gained much interest, and their synthesis and characte...
Nanoscale shape engineering is an essential requirement for the practical use of 2D materials, aimin...
Self-assembled mechanical instabilities can offer a new technology roadmap for micro/nanopatterns of...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
The development of science and technology of advanced materials using nanoscale units can be conduct...
Two-dimensional (2D) materials are a key target for many applications in the modern day. Self-assemb...
Nanocorrals with different size, shape, and orientation are created on covalently modified highly or...
Copyright © 2019 American Chemical Society.The self-assembly of nanoparticles, a process whereby nan...
Established less than a decade ago, the fascinating field of two-dimensional (2D) soft materials is ...
Self-assembly of an alkylated diacetylene derivative is spatially confined via in situ scanning tunn...
The spontaneous organization of semiconductor nanoparticles into uniform pairs of parallel nanorods ...
International audienceTwo-dimensional (2D) self-assembly (SA) is an efficient strategy to organize b...
Self-assembly is a powerful approach to making new superstructures and high-level hierarchical struc...