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Hua Zhang

Researcher at Chinese Academy of Sciences

Publications -  1778
Citations -  144014

Hua Zhang is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Medicine & Graphene. The author has an hindex of 163, co-authored 1503 publications receiving 116769 citations. Previous affiliations of Hua Zhang include Shenzhen University & Zhengzhou University.

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A Mutation in MRH2 Kinesin Enhances the Root Hair Tip Growth Defect Caused by Constitutively Activated ROP2 Small GTPase in Arabidopsis

TL;DR: The genetic analyses, together with cell biological and pharmacological evidence, suggest that the plant-specific kinesin-related protein MRH2 is an important component that controls MT organization and is likely involved in the ROP2 GTPase-controlled coordination of AF and MT during polarized growth of root hairs.
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Polyacrylamide-phytic acid-polydopamine conducting porous hydrogel for rapid detection and removal of copper (II) ions.

TL;DR: The facile synthesized PAAM/PA/PDA hydrogel provides a novel and regenerable platform for monitoring and removing Cu2+ in real samples and exhibits a good capacity to remove Cu2+(231.36±4.70mgg-1), which is superior to those of other adsorption materials reported in the literature.
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Zur Entwicklung der Dip‐Pen‐Nanolithographie

TL;DR: The Dip-Pen-Nanolithographie (DPN) as mentioned in this paper is eine neue Direktschreibmethode with einem Kraftfeldmikroskop zur Erzeugung einer strukturierten chemischen Funktionalitat auf einer Oberflache im sub-100nm-Bereich.
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Graphene Oxide as a Novel Nanoplatform for Enhancement of Aggregation-Induced Emission of Silole Fluorophores

TL;DR: This work states that graphene oxide, a new type of solution-processable nonstoichiometric material, or its reduced state, that is, reduced graphene oxide (rGO), can complex with various organic, inorganic, and biological molecules, leading to a wide range of potential applications in electronic devices and sensing applications.
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Ternary Chalcogenide Nanosheets with Ultrahigh Photothermal Conversion Efficiency for Photoacoustic Theranostics.

TL;DR: Ta2 NiS5 -P has a ternary instead of binary composition, which allows it to passively target, effectively delineate, and completely eradicate the tumor of living mice after systemic administration.