Area of research
Computer Networks and Communications · Spectroscopy
Research interest
Research focused on Nanotechnology and Xanthomonas campestris, with related work in Response regulator, Particle (ecology), Pathovar. Notable publications include '3D steerable, acoustically powered microswimmers for single-particle manipulation', 'Characterization of the GntR family regulator HpaR1 of the crucifer black rot pathogen Xanthomonas campestris pathovar campestris', and 'Concise Synthesis of Linderaspirone A and Bi‐linderone'.
Carbon-coated nickel phosphide with enriched surface Ni<sup><i>δ</i>+</sup> sites enables an exceptionally high productivity of 2-methylfuran from biomass upgrading
Recent advances in functional nucleic acid decorated nanomaterials for cancer imaging and therapy
Genome and transcriptome of Selaginella kraussiana reveal evolution of root apical meristems in vascular plants
McvR, a single domain response regulator regulates motility and virulence in the plant pathogen <i>Xanthomonas campestris</i>
Oxygen sensors mediated HIF-1α accumulation and translocation: A pivotal mechanism of fine particles-exacerbated myocardial hypoxia injury
<i>Xanthomonas campestris</i> sensor kinase HpaS co‐opts the orphan response regulator VemR to form a branched two‐component system that regulates motility
3D steerable, acoustically powered microswimmers for single-particle manipulation
Characterization of the GntR family regulator HpaR1 of the crucifer black rot pathogen Xanthomonas campestris pathovar campestris
Concise Synthesis of Linderaspirone A and Bi‐linderone