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Yu Huang

Researcher at Chinese Academy of Sciences

Publications -  1798
Citations -  114451

Yu Huang is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Medicine & Biology. The author has an hindex of 136, co-authored 1492 publications receiving 89209 citations. Previous affiliations of Yu Huang include The Chinese University of Hong Kong & Samsung.

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Endothelial Dysfunction: The Common Consequence in Diabetes and Hypertension

TL;DR: Specific therapies targeting reactive oxygen species using antioxidants and inhibitors of the rennin-angiotensin system or increasing endothelial nitric oxide synthase activity might assist to reverse endothelial dysfunction and thus reduce the related cardiovascular morbidity and mortality in diabetes and hypertension.
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Photocatalytic Properties of Porous Silicon Nanowires.

TL;DR: It is shown that the porous silicon nanowires and platinum nanoparticle loaded porous silicon Nanowires can be used as effective photocatalytic degradation of organic dyes and toxic pollutants under visible irradiation, and thus are of significant interest for organic waste treatment and environmental remediation.
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IL-6 in diabetes and cardiovascular complications

TL;DR: The present review discusses its roles in diabetes and associated cardiovascular complications, with emphasis on the different outcomes mediated by the two modes of IL‐6 signalling and the value of developing therapeutic strategies to specifically target the deleterious trans‐signalling ofIL‐6.
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Beyond Extended Surfaces: Understanding the Oxygen Reduction Reaction on Nanocatalysts.

TL;DR: The progress that the theoretical descriptor has evolved to reconcile the observed differences between extended and nanoscale Pt surfaces is reviewed, and the needs in advancing both characterizations and theories in order to understand ORR in the more complex Pt-alloy nanocatalysts are highlighted.
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Patterning and Templating for Nanoelectronics

TL;DR: This paper highlights and evaluates some patterning methods from the Center on Functional Engineered Nano Architectonics in Los Angeles and discusses key benchmarking criteria with respect to CMOS scaling.