Catalytic studies of 1,3,5-triphenylbenzene-based liquid organic hydrogen carrier
Hydrogen has been identified as a key energy carrier in the transition to a low-carbon economy due to its high energy density and zero carbon emissions.
Liu, Wai Kwan
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Solvent-Free Hydrogenation and Dehydrogenation of Quinoline and Quinaldine for the LOHC Concept. [PDF]
Aakko-Saksa PT, Mykkänen AM, Repo T.
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A Comparison of Electronic Structure Methods for Predicting the Hydrogenation Energies of Candidate Molecules for Hydrogen Storage. [PDF]
Dumi A +6 more
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Long-Short-Arm Acridine Ru-Pincer Catalysts for Reversible Hydrogen Storage Based on Ethylene Glycol. [PDF]
You C +4 more
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Engineering Porous-Supported Bimetallic Catalysts for Efficient LOHC Dehydrogenation: From Interfacial Modulation to Sustainable Hydrogen Release. [PDF]
Du R, Li Y.
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Inexpensive Hydrogen Storage: Propylene to Propane using Plasmonic Photocatalysis. [PDF]
Carroll A +8 more
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Unlocking hydrogen carrier potential of the Yangtze River in China. [PDF]
Gu Z +5 more
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Mesoporous N-Doped Carbon-Confined PdNi Nanoclusters for Efficient and Robust Dehydrogenation of Additive-Free Formic Acid. [PDF]
Ding Y +5 more
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A facile preparation method for homogeneous Ir catalysts for dehydrogenation and hydrogenation reactions involving N-heteroarenes. [PDF]
Lin X, Zhang Y, Feng W, Li Q, Xi Y.
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Photopolymerized Mixed Matrix Membranes for Liquid Organic Hydrogen Carrier Separation. [PDF]
Khosravanian A +9 more
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