Area of research
Molecular Biology · Inorganic Chemistry
Research interest
Research interests include Chemistry, Nanotechnology, Nanoparticle, Nucleic acid, Materials science, and DNA.
Chiroplasmonic DNA Scaffolded “Fusilli” Structures
Toward the Specificity of Bare Nanomaterial Surfaces for Protein Corona Formation
Targeted VEGF-triggered release of an anti-cancer drug from aptamer-functionalized metal–organic framework nanoparticles
Drug Carriers: Stimuli‐Responsive Nucleic Acid‐Based Polyacrylamide Hydrogel‐Coated Metal–Organic Framework Nanoparticles for Controlled Drug Release (Adv. Funct. Mater. 8/2018)
Triplex DNA Nanostructures: From Basic Properties to Applications
Stimuli‐Responsive Nucleic Acid‐Based Polyacrylamide Hydrogel‐Coated Metal–Organic Framework Nanoparticles for Controlled Drug Release
Stimuli-responsive nucleic acid-functionalized metal–organic framework nanoparticles using pH- and metal-ion-dependent DNAzymes as locks
ATP‐Responsive Aptamer‐Based Metal–Organic Framework Nanoparticles (NMOFs) for the Controlled Release of Loads and Drugs
Cu<sup>2+</sup>‐Modified Metal–Organic Framework Nanoparticles: A Peroxidase‐Mimicking Nanoenzyme
Chiroplasmonic DNA-based nanostructures
Mimicking Peroxidase Activities with Prussian Blue Nanoparticles and Their Cyanometalate Structural Analogues
Controlling the Catalytic Functions of DNAzymes within Constitutional Dynamic Networks of DNA Nanostructures
Orthogonal Operation of Constitutional Dynamic Networks Consisting of DNA-Tweezer Machines
Triplex‐DNA‐Nanostrukturen: von grundlegenden Eigenschaften zu Anwendungen
Coherent electronic and nuclear dynamics in a rhodamine heterodimer–DNA supramolecular complex
Electrostatically stabilized hybrids of carbon and maghemite nanoparticles: electrochemical study and application
Recent Advances in the Synthesis and Functions of Reconfigurable Interlocked DNA Nanostructures
The Application of Stimuli‐Responsive VEGF‐ and ATP‐Aptamer‐Based Microcapsules for the Controlled Release of an Anticancer Drug, and the Selective Targeted Cytotoxicity toward Cancer Cells
DNA Scaffolds for the Dictated Assembly of Left-/Right-Handed Plasmonic Au NP Helices with Programmed Chiro-Optical Properties
Orthogonal Dual‐Triggered Shape‐Memory DNA‐Based Hydrogels
Integration of Switchable DNA-Based Hydrogels with Surfaces by the Hybridization Chain Reaction
Switchable Reconfiguration of a Seven-Ring Interlocked DNA Catenane Nanostructure
Metal Nanoparticle‐Loaded Mesoporous Carbon Nanoparticles: Electrical Contacting of Redox Proteins and Electrochemical Sensing Applications
pH‐Stimulated DNA Hydrogels Exhibiting Shape‐Memory Properties
Dual Switchable CRET-Induced Luminescence of CdSe/ZnS Quantum Dots (QDs) by the Hemin/G-Quadruplex-Bridged Aggregation and Deaggregation of Two-Sized QDs
Switchable Reconfiguration of an Interlocked DNA Olympiadane Nanostructure
Switchable Reconfiguration of an Interlocked DNA Olympiadane Nanostructure
A two-ring interlocked DNA catenane rotor undergoing switchable transitions across three states
Powering the programmed nanostructure and function of gold nanoparticles with catenated DNA machines
A Three-Station DNA Catenane Rotary Motor with Controlled Directionality