Surface-enhanced Raman scattering (SERS) on two-dimensional (2D) layered materials has provided a unique platform to study the chemical mechanism (CM) of the enhancement due to its natural separation from electromagnetic enhancement. The CM stems from the charge interactions between the substrate and molecules. Despite the extensive studies of the energy alignment between 2D materials and molecules, an understanding of how the electronic properties of the substrate are explicitly involved in the charge interaction is still unclear. Lately, a new group of 2D layered materials with anisotropic structures, including orthorhombic black phosphorus (BP) and triclinic rhenium disulfide (ReS2), has attracted great interest due to their unique aniso...
Anisotropic materials are characterized by a unique optical response, which is highly polarization-d...
Rhenium disulfide (ReS<sub>2</sub>) is a semiconducting layered transition metal dichalcogenide that...
Graphene as a substrate for enhancing Raman scattering, called graphene-enhanced Raman scattering (G...
Surface-enhanced Raman scattering (SERS) on two-dimensional (2D) layered materials has provided a un...
Since the discovery of graphene-enhanced Raman scattering in 2010, other 2D materials have been repo...
Realizing Raman enhancement on a flat surface has become increasingly attractive after the discovery...
Suface-enhanced Raman scattering(SERS)on two-dimensional(2D)layered materials have stimulated increa...
Surface-enhanced Raman scattering(SERS)on two-dimensional(2D)layered materials have stimulated incre...
Realizing Raman enhancement on a flat surface has become increasingly attractive after the discovery...
Understanding the charge interaction between molecules and two-dimensional (2D) materials is essenti...
We propose a third-order time-dependent perturbation theory approach to describe the chemical surfac...
A rational approach to investigate the effect of molecular orientation on the intensity of chemical ...
We studied the surface-enhanced Raman scattering of an organic fluoropore (Rhodamine 6G, R6G) monola...
DoctorTwo-dimensional materials have attracted tremendous attention in a wide range of applications ...
Nanoscale molecular structures are central to many current and emerging technologies. Integrating di...
Anisotropic materials are characterized by a unique optical response, which is highly polarization-d...
Rhenium disulfide (ReS<sub>2</sub>) is a semiconducting layered transition metal dichalcogenide that...
Graphene as a substrate for enhancing Raman scattering, called graphene-enhanced Raman scattering (G...
Surface-enhanced Raman scattering (SERS) on two-dimensional (2D) layered materials has provided a un...
Since the discovery of graphene-enhanced Raman scattering in 2010, other 2D materials have been repo...
Realizing Raman enhancement on a flat surface has become increasingly attractive after the discovery...
Suface-enhanced Raman scattering(SERS)on two-dimensional(2D)layered materials have stimulated increa...
Surface-enhanced Raman scattering(SERS)on two-dimensional(2D)layered materials have stimulated incre...
Realizing Raman enhancement on a flat surface has become increasingly attractive after the discovery...
Understanding the charge interaction between molecules and two-dimensional (2D) materials is essenti...
We propose a third-order time-dependent perturbation theory approach to describe the chemical surfac...
A rational approach to investigate the effect of molecular orientation on the intensity of chemical ...
We studied the surface-enhanced Raman scattering of an organic fluoropore (Rhodamine 6G, R6G) monola...
DoctorTwo-dimensional materials have attracted tremendous attention in a wide range of applications ...
Nanoscale molecular structures are central to many current and emerging technologies. Integrating di...
Anisotropic materials are characterized by a unique optical response, which is highly polarization-d...
Rhenium disulfide (ReS<sub>2</sub>) is a semiconducting layered transition metal dichalcogenide that...
Graphene as a substrate for enhancing Raman scattering, called graphene-enhanced Raman scattering (G...