Self-assembly of monolayers of functional molecules on dielectric surfaces is a promising approach for the development of molecular devices proposed in the 1970s. Substrate chemically bonded self-assembled monolayers of semiconducting conjugated molecules exhibit low mobility. And self-assembled monolayer molecular crystals are difficult to scale up and limited to growth on substrates terminated by hydroxyl groups, which makes it difficult to realize sophisticated device functions, particularly for those relying on n-type electron transport, as electrons suffer severe charge trapping on hydroxyl terminated surfaces. Here we report a gravity-assisted, two-dimensional spatial confinement method for bottom-up growth of high-quality n-type sing...
The controlled assembly of the prototypical n-type organic semiconductor N, N'-1H, 1H-perfluorobutyl...
We report on a two-dimensional highly ordered self-assembled monolayer (SAM) directly grown on a bar...
Organic crystals are generated via the bottom-up self-assembly of molecular building blocks which ar...
Growth of monolayer 2D organic crystal has been an interesting topic in recent years owing to their ...
Organic semiconductors hold a great potential in applications of low-cost, light-weight, large-area ...
In organic field-effect transistors, the first few molecular layers at the semiconductor/dielectric ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
The cornerstones of emerging high-performance organic photovoltaic devices are bulk heterojunctions,...
Organic crystals deposited on 2-dimensional (2D) van der Waals substrates have been widely investiga...
High structural quality of crystalline organic semiconductors is the basis of their superior electri...
The newly emerging field in organic electronics is to control the molecule–substrate interface prope...
We have investigated the potential of polymers containing precisely spaced side-branches for thin fi...
We report on a two-dimensional highly ordered self-assembled monolayer (SAM) directly grown on a bar...
Physical properties of active materials built up from small molecules are dictated by their molecula...
The controlled assembly of the prototypical n-type organic semiconductor N, N'-1H, 1H-perfluorobutyl...
We report on a two-dimensional highly ordered self-assembled monolayer (SAM) directly grown on a bar...
Organic crystals are generated via the bottom-up self-assembly of molecular building blocks which ar...
Growth of monolayer 2D organic crystal has been an interesting topic in recent years owing to their ...
Organic semiconductors hold a great potential in applications of low-cost, light-weight, large-area ...
In organic field-effect transistors, the first few molecular layers at the semiconductor/dielectric ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
The cornerstones of emerging high-performance organic photovoltaic devices are bulk heterojunctions,...
Organic crystals deposited on 2-dimensional (2D) van der Waals substrates have been widely investiga...
High structural quality of crystalline organic semiconductors is the basis of their superior electri...
The newly emerging field in organic electronics is to control the molecule–substrate interface prope...
We have investigated the potential of polymers containing precisely spaced side-branches for thin fi...
We report on a two-dimensional highly ordered self-assembled monolayer (SAM) directly grown on a bar...
Physical properties of active materials built up from small molecules are dictated by their molecula...
The controlled assembly of the prototypical n-type organic semiconductor N, N'-1H, 1H-perfluorobutyl...
We report on a two-dimensional highly ordered self-assembled monolayer (SAM) directly grown on a bar...
Organic crystals are generated via the bottom-up self-assembly of molecular building blocks which ar...