© 2020 Springer Nature Switzerland AG. Part of Springer Nature. There are many studies on the solution-processed thin-film transistor (TFT) using transition metal dichalcogenide (TMD) materials. However, it is hard to control the electrical property of chemically exfoliated TMD materials compared to the chemical vapor deposition TMD. An investigation into the electrical modulation behavior of exfoliated two-dimensional (2D) material is important to fabricate well-modulated electronic devices via solution processing. Here, we report the effects of reactivity of organic dopants on MoS(2)and investigate how the chemical doping behavior influences the electrical properties of MoS2. The band state of dopants, which is related to the electron-wit...
Advancements in technology are driven by downscaling the channel length and the thickness of semicon...
The push for electronic devices on smaller and smaller scales has driven research in the direction o...
In this paper, negative transconductance (NTC) behavior in molybdenum disulfides (MoS2) field effect...
Ultra-thin MoS2 film doping through surface functionalization with physically adsorbed species is of...
Atomically thin molybdenum disulfide (MoS2), a member of the transition metal dichalcogenide (TMDC) ...
2D materials have demonstrated enormous potential for a great number of applications such as sensors...
2D materials have demonstrated enormous potential for a great number of applications such as sensors...
Tuning electrical conductivity of semiconducting materials through substitutional doping is crucial ...
From the standpoint of mainstream IC manufacturing, newly introduced two-dimensional (2D) semiconduc...
Control of carrier type and carrier density provides a way to tune the physical properties of two-di...
A simple wet-chemical synthesis of layered MoS2 thin films on sapphire is reported. The gap in under...
We report on the successful synthesis of a p-type, substitutional doping at S-site, MoS2 thin film u...
Molybdenum disulfide (MoS2) is a semiconductor material that is a member of the family of the so-cal...
Despite rapid progress in 2D molybdenum disulfide (MoS2) research in recent years, MoS2 field-effect...
In this paper, we have demonstrated few-layer MoS2 doping using potassium iodide (KI) solution to re...
Advancements in technology are driven by downscaling the channel length and the thickness of semicon...
The push for electronic devices on smaller and smaller scales has driven research in the direction o...
In this paper, negative transconductance (NTC) behavior in molybdenum disulfides (MoS2) field effect...
Ultra-thin MoS2 film doping through surface functionalization with physically adsorbed species is of...
Atomically thin molybdenum disulfide (MoS2), a member of the transition metal dichalcogenide (TMDC) ...
2D materials have demonstrated enormous potential for a great number of applications such as sensors...
2D materials have demonstrated enormous potential for a great number of applications such as sensors...
Tuning electrical conductivity of semiconducting materials through substitutional doping is crucial ...
From the standpoint of mainstream IC manufacturing, newly introduced two-dimensional (2D) semiconduc...
Control of carrier type and carrier density provides a way to tune the physical properties of two-di...
A simple wet-chemical synthesis of layered MoS2 thin films on sapphire is reported. The gap in under...
We report on the successful synthesis of a p-type, substitutional doping at S-site, MoS2 thin film u...
Molybdenum disulfide (MoS2) is a semiconductor material that is a member of the family of the so-cal...
Despite rapid progress in 2D molybdenum disulfide (MoS2) research in recent years, MoS2 field-effect...
In this paper, we have demonstrated few-layer MoS2 doping using potassium iodide (KI) solution to re...
Advancements in technology are driven by downscaling the channel length and the thickness of semicon...
The push for electronic devices on smaller and smaller scales has driven research in the direction o...
In this paper, negative transconductance (NTC) behavior in molybdenum disulfides (MoS2) field effect...