Area of research
Biomedical Engineering · Cancer Research
Research interest
Research interests include Plasmonic and Surface Plasmon Research, MicroRNA in disease regulation, RNA Interference and Gene Delivery, and Gold and Silver Nanoparticles Synthesis and Applications.
Manipulating hyperbolic transient plasmons in a layered semiconductor.
Integrating single-cell multi-omics data through self-supervised clustering
Identifying spatial domain by adapting transcriptomics with histology through contrastive learning
Gate-tunable negative refraction of mid-infrared polaritons.
Real-space nanoimaging of hyperbolic shear polaritons in a monoclinic crystal.
Photoresponse of Solution-Synthesized Graphene Nanoribbon Heterojunctions on Diamond Indicating Phototunable Photodiode Polarity
Photoresponse of Solution-Synthesized Graphene Nanoribbon Heterojunctions on Diamond Indicating Phototunable Photodiode Polarity
Hydrogenation of Hexa-<i>peri</i>-hexabenzocoronene: An Entry to Nanographanes and Nanodiamonds
Optically Tunable Transient Plasmons in InSb Nanowires.
Tunable heterostructural prism for planar polaritonic switch.
Broadband plasmonic indium arsenide photonic antennas.
Real-space nanoimaging of hyperbolic shear polaritons in a monoclinic crystal
Doping-driven topological polaritons in graphene/α-MoO<sub>3</sub> heterostructures.
Quasi‐BIC Enhanced Broadband Terahertz Generation in All‐Dielectric Metasurface
PDGF-R inhibition induces glioblastoma cell differentiation via DUSP1/p38MAPK signalling
Active control of micrometer plasmon propagation in suspended graphene.
Strong Light-Matter Interactions between Gap Plasmons and Two-Dimensional Excitons under Ambient Conditions in a Deterministic Way.
Single-Vesicle Infrared Nanoscopy for Noninvasive Tumor Malignancy Diagnosis.
Self-assembly and photoinduced fabrication of conductive nanographene wires on boron nitride
Self-assembly and photoinduced fabrication of conductive nanographene wires on boron nitride
Ultralow-Loss Phonon Polaritons in the Isotope-Enriched α-MoO<sub>3</sub>.
Construction and validation of a prognostic risk model for breast cancer based on protein expression
Ultra-flat and long-lived plasmons in a strongly correlated oxide.
The HIF-1α antisense long non-coding RNA drives a positive feedback loop of HIF-1α mediated transactivation and glycolysis
The IRENA lncRNA converts chemotherapy-polarized tumor-suppressing macrophages to tumor-promoting phenotypes in breast cancer
DNA of neutrophil extracellular traps promotes cancer metastasis via CCDC25
Proto-oncogene Src links lipogenesis via lipin-1 to breast cancer malignancy
Light-induced irreversible structural phase transition in trilayer graphene
Light-induced irreversible structural phase transition in trilayer graphene.
Manipulating phonon polaritons in low loss <sup>11</sup>B enriched hexagonal boron nitride with polarization control.