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Qidi Ran

Researcher at Free University of Berlin

Publications -  8
Citations -  339

Qidi Ran is an academic researcher from Free University of Berlin. The author has contributed to research in topics: Isothermal titration calorimetry & Binding constant. The author has an hindex of 8, co-authored 8 publications receiving 254 citations. Previous affiliations of Qidi Ran include Humboldt University of Berlin & Helmholtz-Zentrum Berlin.

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Porous Ti4O7 Particles with Interconnected-Pore Structure as a High-Efficiency Polysulfide Mediator for Lithium–Sulfur Batteries

TL;DR: In this article, multifunctional Ti4O7 particles with interconnected-pore structure are designed and synthesized using porous poly(styrene-b-2-vinylpyridine) particles as a template.
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Counterion-Release Entropy Governs the Inhibition of Serum Proteins by Polyelectrolyte Drugs.

TL;DR: In this paper, the interaction of the drug candidate dendritic polyglycerol sulfate (dPGS) with serum proteins using isothermal titration calorimetry (ITC) interpreted and complemented with molecular computer simulations was investigated.
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Bioinspired Universal Monolayer Coatings by Combining Concepts from Blood Protein Adsorption and Mussel Adhesion

TL;DR: This paper presents for the first time a universal monolayer coating that is only a few nanometers thick and independent of the composition, size, shape, and structure of the substrate.
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Synthesis of Dispersible Mesoporous Nitrogen-Doped Hollow Carbon Nanoplates with Uniform Hexagonal Morphologies for Supercapacitors

TL;DR: Hollow carbon nanoplates present superior performance in parallel to polyvinylidene fluoride (PVDF) binder when using polyvinylimidazolium-based nanoparticles as a binder in electrodes, and are applied as electrode materials for symmetric supercapacitors.
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Charged Dendrimers Revisited: Effective Charge and Surface Potential of Dendritic Polyglycerol Sulfate

TL;DR: In this paper, an effective mesoscale Hamiltonian specific to polyglycerol sulfate (dPGS) macromolecule was developed based on input from all-atom, explicit-water simulations of dPGS of low generation.