Interest in gallium chalcogenides, i.e., gallium sulfide (GaS) and gallium selenide (GaSe), is growing rapidly due to its layered structure compatible with the fabrication of very thin layers by mechanical exfoliation and its wide band gap desirable for the design and fabrication of visible-UV optoelectronic devices. It is well known that the properties of these materials depend on their thickness; therefore, a facile and fast method is needed to infer the thickness of layered GaS and GaSe. Here, we report and validate a colorimetric method based on optical imaging for the quick and reliable quantitative determination of the thickness of exfoliated GaS and GaSe layers although it can be extended to other layered systems. For the validation ...
Interest in layered van der Waals semiconductor gallium monosulfide (GaS) is growing rapidly because...
GaSe and InSe nanolayers were obtained by mechanical exfoliation and physical vapor deposition metho...
International audienceLayered semiconductor gallium selenide (GaSe) is considered a potential candid...
Interest in gallium chalcogenides, i.e., gallium sulfide (GaS) and gallium selenide (GaSe), is growi...
We have implemented three different optical methods to quantitatively assess the thickness of thin G...
Group III layered monochalcogenide gallium sulfide, GaS, is one of the latest additions to the two-d...
From the group-III monochalcogenide (MX, M = Ga, In; X = S, Se, Te) layered semiconductors, gall...
The two dimensional atomically layered materials are drawing intense attention in recent years, beca...
Gallium selenide (GaSe) is a novel 2D material, which belongs to the layered III–VIA semiconductors ...
We control the thickness of GaSe on the level of individual layers and study the corresponding optic...
Two-dimensional transition metal dichalcogenides (TMDs) provide an exciting platform to study indire...
The fields of layered material research, such as transition-metal dichalcogenides (TMDs), have demon...
Two-dimensional materials, e.g. graphene and molybdenum disulfide (MoS2), have attracted great inter...
Indium selenide (InSe), as a novel van der Waals-layered semiconductor, has attracted large research...
Two-dimensional (2D) semiconductor nanomaterials hold great promises for future electronics and opti...
Interest in layered van der Waals semiconductor gallium monosulfide (GaS) is growing rapidly because...
GaSe and InSe nanolayers were obtained by mechanical exfoliation and physical vapor deposition metho...
International audienceLayered semiconductor gallium selenide (GaSe) is considered a potential candid...
Interest in gallium chalcogenides, i.e., gallium sulfide (GaS) and gallium selenide (GaSe), is growi...
We have implemented three different optical methods to quantitatively assess the thickness of thin G...
Group III layered monochalcogenide gallium sulfide, GaS, is one of the latest additions to the two-d...
From the group-III monochalcogenide (MX, M = Ga, In; X = S, Se, Te) layered semiconductors, gall...
The two dimensional atomically layered materials are drawing intense attention in recent years, beca...
Gallium selenide (GaSe) is a novel 2D material, which belongs to the layered III–VIA semiconductors ...
We control the thickness of GaSe on the level of individual layers and study the corresponding optic...
Two-dimensional transition metal dichalcogenides (TMDs) provide an exciting platform to study indire...
The fields of layered material research, such as transition-metal dichalcogenides (TMDs), have demon...
Two-dimensional materials, e.g. graphene and molybdenum disulfide (MoS2), have attracted great inter...
Indium selenide (InSe), as a novel van der Waals-layered semiconductor, has attracted large research...
Two-dimensional (2D) semiconductor nanomaterials hold great promises for future electronics and opti...
Interest in layered van der Waals semiconductor gallium monosulfide (GaS) is growing rapidly because...
GaSe and InSe nanolayers were obtained by mechanical exfoliation and physical vapor deposition metho...
International audienceLayered semiconductor gallium selenide (GaSe) is considered a potential candid...