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Xiang Zhao

Researcher at National University of Defense Technology

Publications -  317
Citations -  7808

Xiang Zhao is an academic researcher from National University of Defense Technology. The author has contributed to research in topics: Computer science & Engineering. The author has an hindex of 35, co-authored 185 publications receiving 5858 citations. Previous affiliations of Xiang Zhao include University of Defence & Southwest Petroleum University.

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Metal-Organic Frameworks for Separation.

TL;DR: Some of the latest progress in the applications of MOFs for several key separation issues, with emphasis on newly synthesized MOF materials and the impact of their compositional and structural features on separation properties, are reviewed and highlighted.
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Tunable Redox-Responsive Hybrid Nanogated Ensembles

TL;DR: A new redox-responsive hybrid nanogated ensemble has been developed by introducing the disulfide-linked polymeric network at the outlet of mesoporous silica to release the loading in a tunable manner.
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Pore Space Partition in Metal–Organic Frameworks

TL;DR: This account will highlight many efforts to implement PSP in MOFs and impact of PSP on gas uptake performance, including the PSP in MIL-88 type (acs-type topology) structure, which has led to a huge family of CPMs exhibiting low isosteric heat of adsorption and yet superior CO2 uptake capacity.
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Active Facets on Titanium(III)‐Doped TiO2: An Effective Strategy to Improve the Visible‐Light Photocatalytic Activity

TL;DR: The development of a simple solution method to grow non-stoichiometric rutile TiO2 crystals with desired facets is reported, which results in a material exhibiting greatly enhanced photocatalytic H2 production activity relative to the combustion product.
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pH-responsive nanogated ensemble based on gold-capped mesoporous silica through an acid-labile acetal linker.

TL;DR: A new pH-responsive hybrid nanogated ensemble has been developed by using acetal group linked gold nanoparticle capped mesoporous silica to control the release of guest molecules from mesoporus silica under different pH's.