Materials Science and Engineering
Parent: Samueli School of Engineering
eScholarship stats: Breakdown by Item for December, 2024 through March, 2025
Item | Title | Total requests | Download | View-only | %Dnld |
---|---|---|---|---|---|
7gn8n5h0 | A Close Look at Molecular Self-Assembly with the Transmission Electron Microscope | 157 | 9 | 148 | 5.7% |
7zq911jz | A general method to synthesize and sinter bulk ceramics in seconds | 127 | 90 | 37 | 70.9% |
42822028 | Absolute band-edge energies are over-emphasized in the design of photoelectrochemical materials | 123 | 17 | 106 | 13.8% |
6px3m7ks | Synchrotron X‑ray Analytical Techniques for Studying Materials Electrochemistry in Rechargeable Batteries | 121 | 47 | 74 | 38.8% |
4wx6k32j | A disordered rock salt anode for fast-charging lithium-ion batteries | 115 | 79 | 36 | 68.7% |
0sw3p7g7 | Highly Crystalline Multimetallic Nanoframes with Three-Dimensional Electrocatalytic Surfaces | 113 | 37 | 76 | 32.7% |
2853r3rz | Metal segregation in hierarchically structured cathode materials for high-energy lithium batteries | 95 | 21 | 74 | 22.1% |
7m26904v | Characterization of drug encapsulation and retention in archaea-inspired tetraether liposomes. | 94 | 11 | 83 | 11.7% |
6194m8q3 | Coupled hard–soft spinel ferrite-based core–shell nanoarchitectures: magnetic properties and heating abilities | 82 | 5 | 77 | 6.1% |
3wr1t21k | Toughening mechanisms of the elytra of the diabolical ironclad beetle | 81 | 57 | 24 | 70.4% |
9nc9m8p8 | Detailed-balance limits for sunlight-to-protonic energy conversion from aqueous photoacids and photobases based on reversible mass-action kinetics | 81 | 0 | 81 | 0.0% |
6qz7s6cc | Roadmap on semiconductor-cell biointerfaces. | 80 | 7 | 73 | 8.8% |
08w3h8m9 | Pathway to Complete Energy Sector Decarbonization with Available Iridium Resources using Ultralow Loaded Water Electrolyzers | 79 | 37 | 42 | 46.8% |
8n5931wh | Continuum Modeling of Porous Electrodes for Electrochemical Synthesis | 79 | 40 | 39 | 50.6% |
8n66176t | New mechanisms in dye-sensitized solar cells: Catalyzing two-electron-transfer halide redox chemistry at sensitized TiO2 | 78 | 1 | 77 | 1.3% |
2gz1j3mh | Single-atom tailoring of platinum nanocatalysts for high-performance multifunctional electrocatalysis | 76 | 40 | 36 | 52.6% |
7n17f2m4 | Structure and luminescence of DNA-templated silver clusters | 76 | 4 | 72 | 5.3% |
4sm4g3w9 | Revealing hidden defects through stored energy measurements of radiation damage | 75 | 5 | 70 | 6.7% |
7c06r2j5 | Conversion of Visible Light into Ionic Power Using Photoacid-Dye-Sensitized Bipolar Ion-Exchange Membranes | 72 | 2 | 70 | 2.8% |
6kh823p0 | Oxygen Release Induced Chemomechanical Breakdown of Layered Cathode Materials | 70 | 41 | 29 | 58.6% |
51t0g79c | Modified Pechini synthesis and characterization of Y-doped strontium titanate perovskite | 64 | 21 | 43 | 32.8% |
1s45q06d | Roles of self-exchange electron transfer between anchored metal-polypyridyl dyes to mesoporous metal-oxide thin films | 63 | 4 | 59 | 6.3% |
22w906pw | A natural impact-resistant bicontinuous composite nanoparticle coating | 60 | 37 | 23 | 61.7% |
9j36752x | Dye-sensitized bipolar ion-exchange membranes as artificial light-driven ions pumps for use in solar fuels devices | 60 | 0 | 60 | 0.0% |
2tg1621g | Control over H plus /OH- recombination in bipolar ion-exchange membranes enables extremely low overpotential reactivity for water dissociation or efficient light-driven ion pumping | 59 | 1 | 58 | 1.7% |
713685w3 | Revealing in-plane movement of platinum in polymer electrolyte fuel cells after heavy-duty vehicle lifetime | 59 | 30 | 29 | 50.8% |
0696p5km | Probing chemistry and structure of polymers with energy-tunable X-rays | 56 | 0 | 56 | 0.0% |
0832b0w6 | Iodide Chemistry in Dye-Sensitized Solar Cells: Making and Breaking I−I Bonds for Solar Energy Conversion | 55 | 4 | 51 | 7.3% |
08c240c0 | Unrecognized volatile and semi-volatile organic compounds from brake wear | 55 | 16 | 39 | 29.1% |
5b2514r4 | Bimetallic synergy in cobalt–palladium nanocatalysts for CO oxidation | 52 | 25 | 27 | 48.1% |
852692pr | Strong and ductile FeNiCoAl-based high-entropy alloys for cryogenic to elevated temperature multifunctional applications | 52 | 36 | 16 | 69.2% |
2v56w16f | Particle suspension reactors and materials for solar-driven water splitting | 51 | 29 | 22 | 56.9% |
74d5g7sf | Evaluating particle-suspension reactor designs for Z-scheme solar water splitting via transport and kinetic modeling | 51 | 37 | 14 | 72.5% |
80q5m7p0 | Rapid Antibiotic Susceptibility Determination by Fluorescence Lifetime Tracking of Bacterial Metabolism | 51 | 25 | 26 | 49.0% |
5hs0d8jn | Probing Heterogeneous Degradation of Catalyst in PEM Fuel Cells under Realistic Automotive Conditions with Multi‐Modal Techniques | 48 | 29 | 19 | 60.4% |
30b7t0kc | Modeling of Polarization Losses of a Microbial Fuel Cell | 47 | 29 | 18 | 61.7% |
3s17t3pn | Influence of sulphuric acid anodising on the fatigue strength of a 7075-T73 aluminium alloy | 47 | 12 | 35 | 25.5% |
3297x959 | Therapeutic benefits of music-based synchronous finger tapping in Parkinson’s disease—an fNIRS study protocol for randomized controlled trial in Dalian, China | 46 | 6 | 40 | 13.0% |
4h20n8qq | MoZn-based high entropy alloy catalysts enabled dual activation and stabilization in alkaline oxygen evolution. | 46 | 4 | 42 | 8.7% |
4vj925mz | Ferroelectricity in a semiconducting all-inorganic halide perovskite | 46 | 17 | 29 | 37.0% |
9qc386z2 | Hierarchical nickel valence gradient stabilizes high-nickel content layered cathode materials | 46 | 18 | 28 | 39.1% |
492655x0 | Linking Perfluorosulfonic Acid Ionomer Chemistry and High-Current Density Performance in Fuel-Cell Electrodes | 45 | 23 | 22 | 51.1% |
4fb516g8 | Studies of self-exchange electron transfer and charge accumulation at sensitized TiO2 for multiple-electron-transfer chemistry using a series of amine-functionalized porphyrins | 45 | 0 | 45 | 0.0% |
0cg2m3z6 | Directed evolution of phosphite dehydrogenase to cycle noncanonical redox cofactors via universal growth selection platform | 44 | 13 | 31 | 29.5% |
34n4n2m8 | Direct observation of the local microenvironment in inhomogeneous CO 2 reduction gas diffusion electrodes via versatile pOH imaging | 44 | 28 | 16 | 63.6% |
3p886410 | Revealing the Influence of Binding Motifs on Electron Transfer and Recombination Kinetics for CdSe Quantum Dots Functionalized with a Modified Viologen | 43 | 3 | 40 | 7.0% |
9pc8w0sw | Photoelectrochemical characterization of infrared-absorbing osmium-polypyridyl dyes bound to TiO2 | 43 | 0 | 43 | 0.0% |
3242r17c | Design of Ru-Ni diatomic sites for efficient alkaline hydrogen oxidation | 42 | 9 | 33 | 21.4% |
9sj6h02m | Designing environment‐friendly chromium‐free Spinel‐Periclase‐Zirconia refractories for Ruhrstahl Heraeus degasser | 42 | 29 | 13 | 69.0% |
0w82n878 | Garnet Electrolyte Surface Degradation and Recovery | 41 | 23 | 18 | 56.1% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.