49 results on '"Gao, Mingbin"'
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2. Reply to: Diffusion anomaly in nanopores as a rich field for theorists and a challenge for experimentalists
3. Highly efficient dehydration of polyols: In-situ Brønsted acid from boron phosphate catalyst
4. Constructing asymmetric double-atomic sites for synergistic catalysis of electrochemical CO2 reduction
5. Hyperloop-like diffusion of long-chain molecules under confinement
6. Emerging techniques to monitor temperature and supply heat for multiscale solid-based catalysis processes
7. Spatial confinement of copper single atoms into covalent triazine-based frameworks for highly efficient and selective photocatalytic CO2 reduction
8. Atomic-level modulation of local coordination environment at Fe single-atom sites for enhanced oxygen reduction
9. Directional Transport in Hierarchically Aligned ZSM‑5 Zeolites with High Catalytic Activity.
10. One‐Dimensional Single‐Crystal Mesoporous TiO2 Supported CuW6O24 Clusters as Photocatalytic Cascade Nanoreactor for Boosting Reduction of CO2 to CH4.
11. Silica Confinement for Stable and Magnetic Co‐Cu Alloy Nanoparticles in Nitrogen‐Doped Carbon for Enhanced Hydrogen Evolution
12. Trimetallic FeNiMo Nanofibers as High-Efficiency Electrocatalyst for Robust Oxygen Evolution.
13. Stabilizing the framework of SAPO-34 zeolite toward long-term methanol-to-olefins conversion
14. Directed transforming of coke to active intermediates in methanol-to-olefins catalyst to boost light olefins selectivity
15. A modeling study on reaction and diffusion in MTO process over SAPO-34 zeolites
16. Silica Confinement for Stable and Magnetic Co−Cu Alloy Nanoparticles in Nitrogen‐Doped Carbon for Enhanced Hydrogen Evolution.
17. Silicoaluminophosphate molecular sieve DNL-6: Synthesis with a novel template, N,N′-dimethylethylenediamine, and its catalytic application
18. Significantly Enhanced Energy‐Saving H2 Production Coupled with Urea Oxidation by Low‐ and Non‐Pt Anchored on NiS‐Based Conductive Nanofibers
19. Surface Diffusion Barriers and Catalytic Activity Driven by Terminal Groups at Zeolite Catalysts
20. Imaging spatiotemporal evolution of molecules and active sites in zeolite catalyst during methanol-to-olefins reaction
21. Modulating the electronic structure of Ni(OH)2 by coupling with low-content Pt for boosting the urea oxidation reaction enables significantly promoted energy-saving hydrogen production.
22. Spatiotemporal Heterogeneity of Temperature and Catalytic Activation within Individual Catalyst Particles.
23. Significantly Enhanced Energy‐Saving H2 Production Coupled with Urea Oxidation by Low‐ and Non‐Pt Anchored on NiS‐Based Conductive Nanofibers.
24. Direct quantification of surface barriers for mass transfer in nanoporous crystalline materials
25. Clarifying the Temperature-Dependent Lithium Deposition/Stripping Process and the Evolution of Inactive Li in Lithium Metal Batteries.
26. Constructing asymmetric double-atomic sites for synergistic catalysis of electrochemical CO2 reduction.
27. Effect of Diffusion Constraints and ZnOx Speciation on Nonoxidative Dehydrogenation of Propane and Isobutane over ZnO-Containing Catalysts
28. Observation of spatiotemporal temperature-dependent catalytic activation within individual catalyst particle at work
29. Highly Efficient Dehydration of Polyols: In-Situ Brønsted Acid from Boron Phosphate Catalyst
30. Effect of Diffusion Constraints and ZnO$_x$ Speciation on Nonoxidative Dehydrogenation of Propane and Isobutane over ZnO-Containing Catalysts
31. Migration-agglomeration-lockup of metal particles in zeolite for ultra-stable propane dehydrogenation catalysts
32. Directional Construction of Active Naphthalenic Species within SAPO-34 Crystals toward More Efficient Methanol-to-Olefin Conversion
33. Quantitative principle of shape‐selective catalysis for a rational screening of zeolites for methanol‐to‐hydrocarbons
34. Simultaneously Achieving High Conversion and Selectivity in Syngas-to-Propane Reaction via a Dual-Bed Catalyst System
35. Effect of Diffusion Constraints and ZnOx Speciation on Nonoxidative Dehydrogenation of Propane and Isobutane over ZnO-Containing Catalysts.
36. Quantitative principle of shape‐selective catalysis for a rational screening of zeolites for methanol‐to‐hydrocarbons.
37. Recognizing the Important Role of Surface Barriers in MOR Zeolite Catalyzed DME Carbonylation Reaction
38. Organic-free synthesis of MOR nanoassemblies with excellent DME carbonylation performance
39. Spatial confinement of copper single atoms into covalent triazine-based frameworks for highly efficient and selective photocatalytic CO2 reduction.
40. Control of Surface Barriers in Mass Transfer to Modulate Methanol‐to‐Olefins Reaction over SAPO‐34 Zeolites
41. An approach for predicting intracrystalline diffusivities and adsorption entropies in nanoporous crystalline materials
42. High Propylene Selectivity in Methanol Conversion over a Small-Pore SAPO Molecular Sieve with Ultra-Small Cage
43. Recognizing the Important Role of Surface Barriers in MOR Zeolite Catalyzed DME Carbonylation Reaction.
44. Differentiating Diffusivity in Different Channels of ZSM‐5 Zeolite by Pulsed Field Gradient (PFG) NMR
45. Study of Catalyst Coke Distribution Based on Population Balance Theory: Application to Methanol to Olefins Process
46. Differentiating Diffusivity in Different Channels of ZSM‐5 Zeolite by Pulsed Field Gradient (PFG) NMR.
47. One-Dimensional Single-Crystal Mesoporous TiO 2 Supported CuW 6 O 24 Clusters as Photocatalytic Cascade Nanoreactor for Boosting Reduction of CO 2 to CH 4 .
48. Significantly Enhanced Energy-Saving H 2 Production Coupled with Urea Oxidation by Low- and Non-Pt Anchored on NiS-Based Conductive Nanofibers.
49. Control of Surface Barriers in Mass Transfer to Modulate Methanol-to-Olefins Reaction over SAPO-34 Zeolites.
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