Hao Jiang

Affiliations: 
King Abdullah University of Science and Technology, Thuwal, Saudi Arabia 
Area:
Chemistry
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"Hao Jiang"
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Publications

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Al-Mohammadi B, Wang JX, Jiang H, et al. (2024) Rare Earth -MOFs: From Synthesis to Their Deployment for Amine-Sensing Application in Aqueous Media. Acs Applied Materials & Interfaces
Zhou S, Shekhah O, Ramírez A, et al. (2022) Asymmetric pore windows in MOF membranes for natural gas valorization. Nature. 606: 706-712
Nam DH, Shekhah O, Lee G, et al. (2020) Intermediate Binding Control Using Metal-Organic Frameworks Enhances Electrochemical CO Reduction. Journal of the American Chemical Society
Alsadun N, Mouchaham G, Guillerm V, et al. (2020) Introducing a Cantellation Strategy for the Design of Mesoporous Zeolite-like Metal-Organic Frameworks: Zr-sod-ZMOFs as a Case Study. Journal of the American Chemical Society
Thiam Z, Abou-Hamad E, Dereli B, et al. (2020) Extension of the Surface Organometallic Chemistry to Metal-Organic Framework: development of well-defined single site [(≡Zr-O-)W(=O)(CH2tBu)3] olefin metathesis catalyst. Journal of the American Chemical Society
Chen Z, Jiang H, Li M, et al. (2020) Reticular Chemistry 3.2: Typical Minimal Edge-Transitive and Nets for the Design and Synthesis of Metal-Organic Frameworks. Chemical Reviews
Chen Z, Thiam Z, Shkurenko A, et al. (2019) Enriching the Reticular Chemistry Repertoire with Minimal Edge-Transitive related Nets: Access to Highly-coordinated MOFs based on Double Six-membered Rings as net-coded Building Units. Journal of the American Chemical Society
Jia J, Chen Z, Jiang H, et al. (2019) Extremely Hydrophobic POPs to Access Highly Porous Storage Media and Capturing Agent for Organic Vapors Chem. 5: 180-191
Jiang H, Jia J, Shkurenko A, et al. (2018) Enriching the Reticular Chemistry Repertoire: Merged Nets Approach for the Rational Design of Intricate Mixed-linker MOF Platforms. Journal of the American Chemical Society
Xue DX, Cadiau A, Weseliński ŁJ, et al. (2018) Correction: Topology meets MOF chemistry for pore-aperture fine tuning: ftw-MOF platform for energy-efficient separations via adsorption kinetics or molecular sieving. Chemical Communications (Cambridge, England)
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