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Huihua Li

Researcher at Chinese Academy of Sciences

Publications -  6
Citations -  597

Huihua Li is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Oxide & Graphene. The author has an hindex of 6, co-authored 6 publications receiving 513 citations. Previous affiliations of Huihua Li include University of Science and Technology of China.

Papers
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SnO2/Reduced Graphene Oxide Nanocomposite for the Simultaneous Electrochemical Detection of Cadmium(II), Lead(II), Copper(II), and Mercury(II): An Interesting Favorable Mutual Interference

TL;DR: In this paper, a well-known gas sensing material SnO2 in combination with reduced graphene oxide was used in heavy metal ions detection for the first time, which could be used for the simultaneous and selective electrochemical detection of ultratrace Cd(II), Pb(II, Cu(II) and Hg(II).
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Parts per billion-level detection of benzene using SnO2/graphene nanocomposite composed of sub-6 nm SnO2 nanoparticles

TL;DR: The SnO(2)/graphene nanocomposite showed a very attractive improved sensitivity to toxic volatile organic compounds, especially to benzene, compared to a traditional SnO (2), which is far lower than those reported previously.
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Synthesis and gas sensing properties of hierarchical meso-macroporous SnO2 for detection of indoor air pollutants

TL;DR: Hierarchical meso-macroporous SnO2 was synthesized by a sol-gel process using carbonaceous spheres as sacrificial templates in this article, which exhibited higher gas response and shorter response and recovery times in detecting indoor air pollutants.
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Mesoporous SnO2 sensor prepared by carbon nanotubes as template and its sensing properties to indoor air pollutants

TL;DR: In this paper, a mesoporous SnO2 gas sensor was developed for detecting indoor air pollutants such as ethanol, benzene, meta-xylene, and methanol.
Patent

Metallic oxide material with mesoporous-macroporous composite structure as well as preparation method and application thereof

TL;DR: In this article, a mesoporous-macroporous composite structure of a thin film with a thickness of 0.3-10 microns is described, which consists of spherical holes or semispherical holes with a hole diameter being 100-2000nm.