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Qing Liu

Researcher at Center for Excellence in Education

Publications -  59
Citations -  2446

Qing Liu is an academic researcher from Center for Excellence in Education. The author has contributed to research in topics: DNA origami & DNA. The author has an hindex of 17, co-authored 49 publications receiving 1604 citations. Previous affiliations of Qing Liu include Hunan University & Chinese Academy of Sciences.

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DNA Origami as an In Vivo Drug Delivery Vehicle for Cancer Therapy

TL;DR: It is demonstrated that DNA origami possessed enhanced tumor passive targeting and long-lasting properties at the tumor region and exhibited remarkable antitumor efficacy without observable systemic toxicity in nude mice bearing orthotopic breast tumors labeled with green fluorescent protein.
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Three-dimensional plasmonic chiral tetramers assembled by DNA origami.

TL;DR: It is demonstrated that circular dichroism can be generated with artificial plasmonic chiral nanostructures composed of the minimum number of spherical gold nanoparticles required for three-dimensional (3D) chirality.
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A DNA-Based Nanocarrier for Efficient Gene Delivery and Combined Cancer Therapy

TL;DR: This work introduces a facile and universal strategy to construct a DNA nanostructure-based codelivery system containing a linear tumor therapeutic gene (p53) and a chemotherapeutic drug (doxorubicin, DOX) for combined therapy of multidrug resistant tumor (MCF-7R).
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3D-Integrated metasurfaces for full-colour holography

TL;DR: A compact optical device comprising vertically stacked metasurfaces that simultaneously generates microscopic text and full-colour holograms for encrypted data storage and colour displays and microprint for use in encryption and security is fabricated.
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Integrated Metasurfaces with Microprints and Helicity‐Multiplexed Holograms for Real‐Time Optical Encryption

TL;DR: A novel integrated metasurface is proposed, which can regulate the amplitude, phase, and polarization of light wave simultaneously to realize the combination of microprint and helicity‐multiplexed meta‐holography with negligible crosstalk.