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Dedong Jia

Researcher at Qingdao University

Publications -  29
Citations -  1705

Dedong Jia is an academic researcher from Qingdao University. The author has contributed to research in topics: Supercapacitor & Chemistry. The author has an hindex of 17, co-authored 23 publications receiving 907 citations. Previous affiliations of Dedong Jia include Chinese Academy of Sciences.

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Scalable and robust bilayer polymer foams for highly efficient and stable solar desalination

TL;DR: In this article, a scalable, low-cost, and durable bilayer polymer foam for efficient and stable solar steam generation is presented. But the fabrication process is complex, low efficiency, poor durability, and non-reusability.
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MOF derived Ni-Co-S nanosheets on electrochemically activated carbon cloth via an etching/ion exchange method for wearable hybrid supercapacitors

TL;DR: Li et al. as discussed by the authors demonstrate the rational design and preparation of hollow and ultrathin nickel cobalt sulfides nanosheets arrays on electrochemical activated carbon cloth (Ni-Co-S/ACC) for fabrication of flexible hybrid supercapacitors.
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Hierarchical CuO nanorod arrays in situ generated on three-dimensional copper foam via cyclic voltammetry oxidation for high-performance supercapacitors

TL;DR: In this article, a hierarchical cyclic voltammetry oxidation (CVO) Cu@CuO nanorod arrays were obtained by an in situ oxidation reaction with the combination of calcination and cyclic voltage-amplification oxidation strategies, achieving a high cell voltage of 1.5 V and an outstanding energy density of up to 35.43 W h kg−1.
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Porous carbon prepared via combustion and acid treatment as flexible zinc-ion capacitor electrode material

TL;DR: In this paper, a solid-state zinc-ion capacitor (ZIC) is assembled by integrating zinc nanosheets anode and porous carbon cathode with gelatin gel as electrolyte.
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Reverse synthesis of star anise-like cobalt doped Cu-MOF/Cu2+1O hybrid materials based on a Cu(OH)2 precursor for high performance supercapacitors

TL;DR: In this paper, a vertically oriented Cu(OH)2 nanorod array was selected as both the template and precursor to synthesize highly oriented star anise-like Co-doped Cu-MOF/Cu2+1O (Cu2 + 1O refers to the Cu2O with metal excess defects) nanohybrid materials, where the MOF structure is formed through an in situ reverse transformation process.