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Mingxia Song

Researcher at Nanjing University of Information Science and Technology

Publications -  18
Citations -  545

Mingxia Song is an academic researcher from Nanjing University of Information Science and Technology. The author has contributed to research in topics: Plasmon & Surface plasmon. The author has an hindex of 7, co-authored 17 publications receiving 418 citations. Previous affiliations of Mingxia Song include University of Burgundy.

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Preferable phosphate sequestration by nano-La(III) (hydr)oxides modified wheat straw with excellent properties in regeneration

TL;DR: In this article, a new nanocomposite Ws-N-La is fabricated for efficient phosphate removal by immobilizing "rod-like" nano-sized La(III) (hydr)oxides within a quaternary-aminated wheat straw (Ws-N).
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Silencing and enhancement of second-harmonic generation in optical gap antennas.

TL;DR: It is demonstrated that second-harmonic responses generated at strongly interacting optical gap antennas can be significantly suppressed and restored by changing the manner in which electrically-connected optical antennas are interacting in the charge-transfer plasmon regime.
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Imaging symmetry-selected corner plasmon modes in penta-twinned crystalline Ag nanowires.

TL;DR: The results show that, beyond dissipation concerns, the morphological and structural control obtained in crystalline colloidal plasmonic nanostructures can be exploited to finely tune their optical properties.
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Temperature-controlled transparent-film heater based on silver nanowire–PMMA composite film

TL;DR: Ag NW-PMMA film can be a promising candidate for diversified heating applications and developed a physical therapeutic instrument with two modes of thermotherapy and electronic-pulse massage by using the composite films as two electrodes, greatly decreasing the weight and power consumption compared to a traditional instrument.
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Hexagonal and Square Patterned Silver Nanowires/PEDOT:PSS Composite Grids by Screen Printing for Uniformly Transparent Heaters

TL;DR: Improved photoelectric properties of transparent electrodes could be obtained by designing a printing pattern with optimized printing parameters, and the Ag NWs/PEDOT:PSS composite films with hexagonal and square patterns exhibit high transparency and good uniformity, suggesting promising applications in large-area and uniform heaters.