Monolayers of transition metal dichalcogenides (TMDCs) have attracted a great interest for post-silicon electronics and photonics due to their high carrier mobility, tunable bandgap, and atom-thick 2D structure. With the analogy to conventional silicon electronics, establishing a method to convert TMDC to p- and n-type semiconductors is essential for various device applications, such as complementary metal-oxide-semiconductor (CMOS) circuits and photovoltaics. Here, a successful control of the electrical polarity of monolayer WSe2 is demonstrated by chemical doping. Two different molecules, 4-nitrobenzenediazonium tetrafluoroborate and diethylenetriamine, are utilized to convert ambipolar WSe2 field-effect transistors (FETs) to p- and n-typ...
For semiconductor industry to replace silicon CMOS integrated circuits by 2-D semiconductors or tran...
DoctorSince the report on graphene in 2004, interest in two dimensional materials has increased and ...
We report on large exciton tuning in WSe$_2$ monolayers via substrate induced non-degenerate doping....
We report the first observation of gate-controlled field emission current from a tungsten diselenide...
Structural defects are known to worsen electrical and optical properties of 2D materials. Transition...
Despite heightened interest in 2D transition-metal dichalcogenide (TMD) doping methods for future la...
We investigated the electrical and optoelectronic characteristics of ambipolar WSe2 field-effect tra...
Amongst 2-dimensional (2D) semiconductors of the transition-metal di-chalcogenide (TMDC) family [1],...
WSe2 is a layered ambipolar semiconductor enabling hole and electron transport, which renders it a s...
WSe2 is a layered ambipolar semiconductor enabling hole and electron transport, which renders it a s...
Most doping research into transition metal dichalcogenides (TMDs) has been mainly focused on the imp...
My Ph.D research interest is applying standard micro/nano synthesis, fabrication, and processing equ...
In today\u27s silicon age in which we live, field-effect transistors (FET) are the workhorse of vi...
Transition metal dichacogenides represent a unique class of two-dimensional layered materials that c...
Atomically thin two-dimensional (2D) materials belonging to transition metal dichalcogenides, due to...
For semiconductor industry to replace silicon CMOS integrated circuits by 2-D semiconductors or tran...
DoctorSince the report on graphene in 2004, interest in two dimensional materials has increased and ...
We report on large exciton tuning in WSe$_2$ monolayers via substrate induced non-degenerate doping....
We report the first observation of gate-controlled field emission current from a tungsten diselenide...
Structural defects are known to worsen electrical and optical properties of 2D materials. Transition...
Despite heightened interest in 2D transition-metal dichalcogenide (TMD) doping methods for future la...
We investigated the electrical and optoelectronic characteristics of ambipolar WSe2 field-effect tra...
Amongst 2-dimensional (2D) semiconductors of the transition-metal di-chalcogenide (TMDC) family [1],...
WSe2 is a layered ambipolar semiconductor enabling hole and electron transport, which renders it a s...
WSe2 is a layered ambipolar semiconductor enabling hole and electron transport, which renders it a s...
Most doping research into transition metal dichalcogenides (TMDs) has been mainly focused on the imp...
My Ph.D research interest is applying standard micro/nano synthesis, fabrication, and processing equ...
In today\u27s silicon age in which we live, field-effect transistors (FET) are the workhorse of vi...
Transition metal dichacogenides represent a unique class of two-dimensional layered materials that c...
Atomically thin two-dimensional (2D) materials belonging to transition metal dichalcogenides, due to...
For semiconductor industry to replace silicon CMOS integrated circuits by 2-D semiconductors or tran...
DoctorSince the report on graphene in 2004, interest in two dimensional materials has increased and ...
We report on large exciton tuning in WSe$_2$ monolayers via substrate induced non-degenerate doping....