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Xiangxi Wang

Researcher at Harbin Engineering University

Publications -  22
Citations -  416

Xiangxi Wang is an academic researcher from Harbin Engineering University. The author has contributed to research in topics: Chemistry & Engineering. The author has an hindex of 7, co-authored 9 publications receiving 220 citations.

Papers
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Journal ArticleDOI

Honeycomb-Satellite Structured pH/H2O2-Responsive Degradable Nanoplatform for Efficient Photodynamic Therapy and Multimodal Imaging

TL;DR: The in vitro and in vivo experiments demonstrate that hMUC sample with the honeycomb-satellite structure can serve as multimodal bioimaging contrast agent for self-enhanced upconversion luminescence (UCL), magnetic resonance imaging (MRI) and computed tomography (CT) imaging, indicating that the as-prepared hM UC could be used in imaging-guided diagnosis and treatment.
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An intelligent nanoplatform for simultaneously controlled chemo-, photothermal, and photodynamic therapies mediated by a single NIR light

TL;DR: The design of a single near-infrared (NIR) light induced tri-mode (PTT, PDT and chemotherapy) combined therapeutic nanoplatform (named IONCs@Ce6-DOX/PCM) based on amine-functionalized iron oxide nanocrystals indicates that the multifunctional carriers can facilitate a range of imaging guided cancer treatments and provide synergistic photothermal/chemo/photodynamic therapy for improved treatment efficiency and minimized side effects.
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Fe3O4@MIL-100(Fe)-UCNPs heterojunction photosensitizer: Rational design and application in near infrared light mediated hypoxic tumor therapy

TL;DR: A novel nanoplatform was designed in which UCNPs were acted as energy transducers to transfer NIR-UV/vis light to the heterojunction photosensitizer Fe3O4@MIL-100(Fe) (abbreviated as FM), producing cytotoxic hydroxyl radicals ( OH) with a high tumor cell oxidation capability independent of tumor oxygen.
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NiS2/MoS2 on carbon cloth as a bifunctional electrocatalyst for overall water splitting

TL;DR: In this article, hierarchical NiS2/MoS2 growing on carbon cloth (abbreviated as NiS 2/Mo S2-CC) is synthesized through a two-step process with bifunctional properties for both the HER and oxygen evolution reaction (OER).
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Ultrafine Sn 4 P 3 nanocrystals from chloride reduction on mechanically activated Na surface for sodium/lithium ion batteries

TL;DR: In this paper, a one-step method to synthesize Sn4P3 nanostructure based on simultaneous reduction of SnCl4 and PCl3 on mechanically activated Na surface and in situ phosphorization was developed.