Air-stable broadband saturable absorbers (SAs) exhibit a promising application potential, and their preparations are also full of challenges. Palladium selenide (PdSe2), as a novel two-dimensional (2D) layered material, exhibits competitive optical properties including wide tunable bandgap, unique pentagonal atomic structure, excellent air stability, and so on, which are significant in designing air-stable broadband SAs. In our work, theoretical calculation of the electronic band structures and bandgap characteristics of PdSe2 are studied first. Additionally, PdSe2 nanosheets are synthesized and used for designing broadband SAs. Based on the PdSe2 SA, ultrafast mode-locked operations in 1- and 1.5-μm spectral regions are generated successfu...
© 2015.Two-dimensional (2D) nanomaterials are an emergent and promising platform for future photonic...
Two-dimensional (2D) palladium diselenide (PdSe2) has strong interlayer coupling and a puckered pent...
The rise of two-dimensional (2D) materials has enabled the realization of ultra-thin electronic devi...
Two-dimensional (2D) noble-metal dichalcogenides exhibit exceptionally strong thickness-dependent ba...
Two-dimensional (2D) noble-metal dichalcogenides exhibit exceptionally strong thickness-dependent ba...
Two-dimensional (2D) noble-metal dichalcogenides exhibit exceptionally strong thickness-dependent ba...
Large-area and highly crystalline transition metal dichalcogenides (TMDs) films possess superior sat...
Recently, layered two-dimensional (2D) palladium diselenide (PdSe2), with a unique low- symmetry puc...
Large-area and highly crystalline transition metal dichalcogenides (TMDs) films possess superior sat...
Large-area and highly crystalline transition metal dichalcogenides (TMDs) films possess superior sat...
Palladium selenides have attracted considerable attention because of their intriguing properties and...
Palladium selenides have attracted considerable attention because of their intriguing properties and...
We studied the physical, electronic transport and optical properties of a unique pentagonal PdQ(2) (...
We studied the physical, electronic transport and optical properties of a unique pentagonal PdQ(2) (...
We fabricate a free-standing molybdenum diselenide (MoSe2) saturable absorber by embedding liquid-ph...
© 2015.Two-dimensional (2D) nanomaterials are an emergent and promising platform for future photonic...
Two-dimensional (2D) palladium diselenide (PdSe2) has strong interlayer coupling and a puckered pent...
The rise of two-dimensional (2D) materials has enabled the realization of ultra-thin electronic devi...
Two-dimensional (2D) noble-metal dichalcogenides exhibit exceptionally strong thickness-dependent ba...
Two-dimensional (2D) noble-metal dichalcogenides exhibit exceptionally strong thickness-dependent ba...
Two-dimensional (2D) noble-metal dichalcogenides exhibit exceptionally strong thickness-dependent ba...
Large-area and highly crystalline transition metal dichalcogenides (TMDs) films possess superior sat...
Recently, layered two-dimensional (2D) palladium diselenide (PdSe2), with a unique low- symmetry puc...
Large-area and highly crystalline transition metal dichalcogenides (TMDs) films possess superior sat...
Large-area and highly crystalline transition metal dichalcogenides (TMDs) films possess superior sat...
Palladium selenides have attracted considerable attention because of their intriguing properties and...
Palladium selenides have attracted considerable attention because of their intriguing properties and...
We studied the physical, electronic transport and optical properties of a unique pentagonal PdQ(2) (...
We studied the physical, electronic transport and optical properties of a unique pentagonal PdQ(2) (...
We fabricate a free-standing molybdenum diselenide (MoSe2) saturable absorber by embedding liquid-ph...
© 2015.Two-dimensional (2D) nanomaterials are an emergent and promising platform for future photonic...
Two-dimensional (2D) palladium diselenide (PdSe2) has strong interlayer coupling and a puckered pent...
The rise of two-dimensional (2D) materials has enabled the realization of ultra-thin electronic devi...