38 results on '"Hu, Mingxiang"'
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2. In-situ adsorption and catalysis of polysulfide on Janus Ni3Fe−Fe2VO4 heterostructure for Li − S batteries
3. Cancer Cell Membrane‐Based Materials for Biomedical Applications
4. Effects of high acyl gellan gum on the rheological properties, stability, and salt ion stress of sodium caseinate emulsion
5. Salt and sugar derived high power carbon microspheres anode with excellent low-potential capacity
6. Pore structure regulation of hard carbon: Towards fast and high‐capacity sodium‐ion storage
7. Peroxidase‐Like Nanozymes Induce a Novel Form of Cell Death and Inhibit Tumor Growth In Vivo
8. Defect engineering of vanadium pentoxide for efficient lithium-ion storage
9. Layered carbon-based pseudocapacitive materials for lithium/sodium-ion capacitor with high energy-power densities and long cycle life
10. Sodium-ion capacitors with superior energy-power performance by using carbon-based materials in both electrodes
11. Cross‐Bar SnO2‐NiO Nanofiber‐Array‐Based Transparent Photodetectors with High Detectivity
12. Revealing the Critical Factor in Metal Sulfide Anode Performance in Sodium‐Ion Batteries: An Investigation of Polysulfide Shuttling Issues
13. Advanced Materials for Sodium‐Ion Capacitors with Superior Energy–Power Properties: Progress and Perspectives
14. Sulfur-Doped Reduced Graphene Oxide for Enhanced Sodium Ion Pseudocapacitance
15. Transparent Electronics: Solution‐Processed Self‐Powered Transparent Ultraviolet Photodetectors with Ultrafast Response Speed for High‐Performance Communication System (Adv. Funct. Mater. 20/2019)
16. Ultrahigh rate sodium-ion storage of SnS/SnS2 heterostructures anchored on S-doped reduced graphene oxide by ion-assisted growth
17. Solution‐Processed Self‐Powered Transparent Ultraviolet Photodetectors with Ultrafast Response Speed for High‐Performance Communication System
18. Monodisperse nitrogen-doped carbon spheres with superior rate capacities for lithium/sodium ion storage
19. Composite K2Mo4O13/α-MoO3 nanorods: sonochemical preparation and applications for advanced Li+/Na+ pseudocapacitance
20. Coupled ultrasonication-milling synthesis of hierarchically porous carbon for high-performance supercapacitor
21. Flexible photodetector based on large-area few-layer MoS2
22. Ultrahigh rate binder-free Na3V2(PO4)3/carbon cathode for sodium-ion battery
23. High-performance sodium-ion hybrid capacitors based on an interlayer-expanded MoS2/rGO composite: surpassing the performance of lithium-ion capacitors in a uniform system
24. High Areal Capacity Li-Ion Storage of Binder-Free Metal Vanadate/Carbon Hybrid Anode by Ion-Exchange Reaction
25. Highly Active Ni-Based Catalyst Derived from Double Hydroxides Precursor for Low Temperature CO2 Methanation
26. Transition metal assisted synthesis of tunable pore structure carbon with high performance as sodium/lithium ion battery anode
27. Carbon Dioxide Methanation over Nickel-Based Catalysts Supported on Various Mesoporous Material
28. Efficiency enhancement of TiO2self-powered UV photodetectors using a transparent Ag nanowire electrode
29. Ultrahigh rate sodium ion storage with nitrogen-doped expanded graphite oxide in ether-based electrolyte
30. Size-Controlled Graphene Nanodot Arrays/ZnO Hybrids for High-Performance UV Photodetectors
31. Novel Ω-Shaped Core-Shell Photodetector with High Ultraviolet Selectivity and Enhanced Responsivity
32. Enhanced sodium-ion storage of nitrogen-rich hard carbon by NaCl intercalation
33. Optoelectronic Devices: Solution-Growth Strategy for Large-Scale “CuGaO2 Nanoplate/ZnS Microsphere” Heterostructure Arrays with Enhanced UV Adsorption and Optoelectronic Properties (Adv. Funct. Mater. 23/2017)
34. Visible-light-driven photodegradation of aqueous organic pollutants by Ag/AgCl@Zn3V2O8 nanocomposites
35. High areal specific capacity of Ni3V2O8/carbon cloth hierarchical structures as flexible anodes for sodium-ion batteries
36. Pressure Sensors: Ultrasensitive Pressure Detection of Few-Layer MoS2 (Adv. Mater. 4/2017)
37. Ultrasensitive Pressure Detection of Few‐Layer MoS 2
38. Microwave-assisted growth of In2O3 nanoparticles on WO3 nanoplates to improve H2S-sensing performance
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