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Xiufeng Song

Researcher at Nanjing University of Science and Technology

Publications -  89
Citations -  4939

Xiufeng Song is an academic researcher from Nanjing University of Science and Technology. The author has contributed to research in topics: Phosphor & Photoluminescence. The author has an hindex of 34, co-authored 81 publications receiving 3935 citations. Previous affiliations of Xiufeng Song include City University of Hong Kong & Nanjing University of Aeronautics and Astronautics.

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Two-dimensional antimonene single crystals grown by van der Waals epitaxy.

TL;DR: The van der Waals epitaxy growth of few-layer antimonene monocrystalline polygons, their atomical microstructure and stability in ambient condition are reported, showing high electrical conductivity up to 104 S m−1 and good optical transparency in the visible light range, promising in transparent conductive electrode applications.
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Two-dimensional semiconductors: recent progress and future perspectives

TL;DR: In this paper, recent developments in the synthesis, properties and applications of two-dimensional semiconductors are discussed, and the reported virtues and novelties of 2D semiconductor are highlighted and current problems in their developing process are clarified, in addition to their challenges and future prospects.
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2D materials via liquid exfoliation: a review on fabrication and applications

TL;DR: In this paper, the sonication liquid-phase exfoliation (LSE) method was used to extract 2D materials from graphene, h-BN and black phosphorus nanosheets.
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Intercrossed carbon nanorings with pure surface states as low-cost and environment-friendly phosphors for white-light-emitting diodes.

TL;DR: It is demonstrated that the design of surface states plays a crucial role in exploring new functions of fluorescent carbon nanomaterials by using these low-temperature-synthesized and toxic ion-free IC-CNRs as solid phosphors on blue LED chips.
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Black phosphorene as a hole extraction layer boosting solar water splitting of oxygen evolution catalysts.

TL;DR: It is demonstrated that a black phosphorene layer, inserted between the OEC and BiVO4 can improve the photoelectrochemical performance of pre-optimized OEC/BiVO4 (OEC: NiOOH, MnOx, and CoOOH) systems by 1.2∼1.6-fold, and a promising nexus between semiconductor and electrocatalyst is suggested.