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large decrease » larger decrease (Expand Search), marked decrease (Expand Search), large increases (Expand Search)
sizes decrease » scores decreased (Expand Search), rivers decreased (Expand Search)
step decrease » teer decrease (Expand Search), we decrease (Expand Search)
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Understanding the Effect of Platinum Particle Size on Ethane Dehydrogenation and Hydrogenolysis: Particle-Based Microkinetic Modeling at Finite Conversion
Published 2025“…Facet cooperativity is observed for the EDH mechanism, where surface reactions occur predominantly on Pt(211), while adsorption and desorption largely proceed on the terrace facets. Ethylene is produced via both dehydrogenation and hydrogenation pathways, methane originates from C–C cleavage on Pt(211), and acetylene is produced, in trace amounts, on Pt(111). …”
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Understanding the Effect of Platinum Particle Size on Ethane Dehydrogenation and Hydrogenolysis: Particle-Based Microkinetic Modeling at Finite Conversion
Published 2025“…Facet cooperativity is observed for the EDH mechanism, where surface reactions occur predominantly on Pt(211), while adsorption and desorption largely proceed on the terrace facets. Ethylene is produced via both dehydrogenation and hydrogenation pathways, methane originates from C–C cleavage on Pt(211), and acetylene is produced, in trace amounts, on Pt(111). …”
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Understanding the Effect of Platinum Particle Size on Ethane Dehydrogenation and Hydrogenolysis: Particle-Based Microkinetic Modeling at Finite Conversion
Published 2025“…Facet cooperativity is observed for the EDH mechanism, where surface reactions occur predominantly on Pt(211), while adsorption and desorption largely proceed on the terrace facets. Ethylene is produced via both dehydrogenation and hydrogenation pathways, methane originates from C–C cleavage on Pt(211), and acetylene is produced, in trace amounts, on Pt(111). …”
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Understanding the Effect of Platinum Particle Size on Ethane Dehydrogenation and Hydrogenolysis: Particle-Based Microkinetic Modeling at Finite Conversion
Published 2025“…Facet cooperativity is observed for the EDH mechanism, where surface reactions occur predominantly on Pt(211), while adsorption and desorption largely proceed on the terrace facets. Ethylene is produced via both dehydrogenation and hydrogenation pathways, methane originates from C–C cleavage on Pt(211), and acetylene is produced, in trace amounts, on Pt(111). …”
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