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Yanhang Ma

Researcher at ShanghaiTech University

Publications -  97
Citations -  3806

Yanhang Ma is an academic researcher from ShanghaiTech University. The author has contributed to research in topics: Catalysis & Chemistry. The author has an hindex of 20, co-authored 72 publications receiving 1972 citations. Previous affiliations of Yanhang Ma include Stockholm University.

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Filling metal-organic framework mesopores with TiO2 for CO2 photoreduction.

TL;DR: Investigation of a chromium-based metal–organic framework shows that the location of added TiO 2 inside specific mesopores strongly affects the ability of the material to catalyse photoreduction of CO 2, and facilitates photocatalytic CO 2 reduction.
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Weaving of organic threads into a crystalline covalent organic framework.

TL;DR: A three-dimensional covalent organic framework constructed from helical organic threads, designed to be mutually weaving at regular intervals, has been synthesized by imine condensation reactions of aldehyde functionalized copper(I)-bisphenanthroline tetrafluoroborate, Cu(PDB)2(BF4), and benzidine (BZ).
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Cobalt phosphate-modified barium-doped tantalum nitride nanorod photoanode with 1.5% solar energy conversion efficiency

TL;DR: An efficient and stable photoanode is reported that couples an active barium-doped tantalum nitride nanostructure with a stable cobalt phosphate co-catalyst and yields a maximum solar energy conversion efficiency more than three times higher than that of state-of-the-art single-photon photoanodes.
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π–π interaction of aromatic groups in amphiphilic molecules directing for single-crystalline mesostructured zeolite nanosheets

TL;DR: A concept for designing a single quaternary ammonium head amphiphilic template with strong ordered self-assembling ability through π-π stacking in hydrophobic side, which stabilizes the mesostructure to form single-crystalline mesostructured zeolite nanosheets.
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A Crystalline Polyimide Porous Organic Framework for Selective Adsorption of Acetylene over Ethylene.

TL;DR: PAF-110 is the first crystalline porous organic material to exhibit selective adsorption of acetylene over ethylene, and its properties may provide insight into the further optimized design of porous organic materials for this key gas separation.