Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research focused on Grouper and Interferon, with related work in Ectopic expression, Delocalized electron, Bimetal. Notable publications include 'Delocalized electrolyte design enables 600 Wh kg−1 lithium metal pouch cells', 'Fish TRIM32 functions as a critical antiviral molecule against iridovirus and nodavirus', and 'TBK1 from orange-spotted grouper exerts antiviral activity against fish viruses and regulates interferon response'.
Delocalized electrolyte design enables 600 Wh kg−1 lithium metal pouch cells
Efficient air epoxidation of cycloalkenes over bimetal-organic framework ZnCo-MOF materials
Facile and controllable synthesis of molybdenum disulfide quantum dots for highly sensitive and selective sensing of copper ions
TBK1 from orange-spotted grouper exerts antiviral activity against fish viruses and regulates interferon response
Grouper MAVS functions as a crucial antiviral molecule against nervous necrosis virus infection
Singapore grouper iridovirus (SGIV) TNFR homolog VP51 functions as a virulence factor via modulating host inflammation response
Fish TRIM35 negatively regulates the interferon signaling pathway in response to grouper nodavirus infection
Fish DDX3X exerts antiviral function against grouper nervous necrosis virus infection
Preparation and optical properties of magnetic carbon/iron oxide hybrid dots
Grouper STAT1a is involved in antiviral immune response against iridovirus and nodavirus infection
Fish TRIM32 functions as a critical antiviral molecule against iridovirus and nodavirus
Fish TRIM16L exerts negative regulation on antiviral immune response against grouper iridoviruses
Au nanoparticles and graphene quantum dots co-modified glassy carbon electrode for catechol sensing
An approach to controlling the fluorescence of graphene quantum dots: From surface oxidation to fluorescent mechanism