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Mingxi Yang

Researcher at Jilin University

Publications -  21
Citations -  1634

Mingxi Yang is an academic researcher from Jilin University. The author has contributed to research in topics: Chemistry & Overpotential. The author has an hindex of 13, co-authored 17 publications receiving 786 citations.

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Evolution and Synthesis of Carbon Dots: From Carbon Dots to Carbonized Polymer Dots

TL;DR: CPDs are revealed as an emerging class of CDs with distinctive polymer/carbon hybrid structures and properties, and critical insights into facilitating their potential in various application fields are proposed.
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One-Step Hydrothermal Synthesis of Nitrogen-Doped Conjugated Carbonized Polymer Dots with 31% Efficient Red Emission for In Vivo Imaging.

TL;DR: A green, facile hydrothermal synthesis of highly efficient red emissive nitrogen-doped carbonized polymer dots (CPDs) with optimal emission at around 630 nm are reported, demonstrating that most CPDs and their metabolites are not only excreted in urine but also excrete by hepatobiliary system in a rapid manner.
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Color-Tunable Carbon Dots Possessing Solid-State Emission for Full-Color Light-Emitting Diodes Applications

TL;DR: In this paper, a unique strategy is proposed to modulate fluorescence color of carbon dots (CDs) under both aqueous solution and solid state for bright multicolor light-emitting diodes (LEDs) applications.
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Synchronously integration of Co, Fe dual-metal doping in Ru@C and CDs for boosted water splitting performances in alkaline media

TL;DR: In this paper, two different functional electrocatalysts were simultaneously synthesized within one-pot reactor through hydrothermal method, and the Co, Fe co-doped carbon dots (CoFe-CDs) exhibited an extremely low overpotential of 4
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A highly efficient overall water splitting ruthenium-cobalt alloy electrocatalyst across a wide pH range via electronic coupling with carbon dots

TL;DR: In this article, a RuCo@CD electrocatalyst was developed to achieve a very low overpotential of 51 mV, 11 mV and 67 mV for hydrogen evolution reaction (HER) at 10 mA cm−2 in 0.5 M H2SO4, 1.0 M KOH and neutral 1.5 mM PBS.