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Chao Zhang

Researcher at Beihang University

Publications -  4347
Citations -  118320

Chao Zhang is an academic researcher from Beihang University. The author has contributed to research in topics: Medicine & Computer science. The author has an hindex of 127, co-authored 3119 publications receiving 84711 citations. Previous affiliations of Chao Zhang include West Virginia University & University of Oklahoma.

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The effect of Fe2+ ions on dielectric and magnetic properties of Yb3Fe5O12 ceramics

TL;DR: Yb3Fe5O12 ceramics with garnet structure were prepared employing the solid-state reaction method, and the results reveal that the emergence of Fe2+ ions greatly affects dielectric relaxation, magnetic relaxation, saturation magnetization, and magnetoelectric coupling, which was further confirmed by oxygen treatment.
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High-refractive-index transparent coatings enhance the optical fiber cladding modes refractometric sensitivity

TL;DR: It is demonstrated that, in the presence of a high-refractive-index coating surrounding the fiber outer surface, the wavelength spacing between the orthogonally polarized cladding modes families can be drastically enhanced.
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Poly(2-ethyl-2-oxazoline)–Doxorubicin Conjugate-Based Dual Endosomal pH-Sensitive Micelles with Enhanced Antitumor Efficacy

TL;DR: PEOz-hyd-DOX conjugate-based micelles might be potential drug delivery vehicles of DOX for safe and effective breast cancer therapy and substantially enhance antitumor efficacy and reduce side effects compared with free DOX.
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Generation of a set of conditional analog-sensitive alleles of essential protein kinases in the fission yeast Schizosaccharomyces pombe

TL;DR: To inactivate these kinases conditionally, the mutation of a single residue in the ATP-binding pocket confers sensitivity to small-molecule inhibitors, allowing for specific inactivation of the modified kinase.
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Superior energy-storage performance in 0.85Bi0.5Na0.5TiO3–0.15NaNbO3 lead-free ferroelectric ceramics via composition and microstructure engineering

TL;DR: In this article, a composition engineering strategy has been proposed to overcome the trade-off between the polarization and the breakdown strength of dielectric energy storage materials and capacitors, which achieved a recoverable energy density of 7.3 J cm−3, one of the highest values for lead-free ferroelectric ceramics.