Energy Storage & Distributed Resources
Parent: Energy Technologies
eScholarship stats: History by Item for March through June, 2026
| Item | Title | Total requests | 2026-06 | 2026-05 | 2026-04 | 2026-03 |
|---|---|---|---|---|---|---|
| 9tq865nr | Evaluation of various passive cooling solutions in decarbonizing the Indonesian residential building sector in tropical climates | 2,158 | 100 | 223 | 268 | 1,567 |
| 9532z8t0 | Data-driven prediction of battery cycle life before capacity degradation | 1,788 | 598 | 406 | 393 | 391 |
| 3h26p692 | Commentary: The Materials Project: A materials genome approach to accelerating materials innovation | 989 | 275 | 238 | 251 | 225 |
| 3nt0c17c | Hydrogen production with seawater-resilient bipolar membrane electrolyzers | 937 | 219 | 278 | 247 | 193 |
| 4w49b5cb | An autonomous laboratory for the accelerated synthesis of inorganic materials | 851 | 399 | 232 | 143 | 77 |
| 51z9m46x | Proton Exchange Membrane (PEM) Water Electrolysis: Cell-Level Considerations for Gigawatt-Scale Deployment | 711 | 286 | 234 | 111 | 80 |
| 6zx6n2j4 | Effect of water droplet growth dynamics on electrode current in fuel-cell catalyst layers | 700 | 183 | 205 | 184 | 128 |
| 4794p4mt | A review of thermal physics and management inside lithium-ion batteries for high energy density and fast charging | 695 | 231 | 170 | 136 | 158 |
| 83j0h96d | Cation-disordered rocksalt-type high-entropy cathodes for Li-ion batteries | 650 | 184 | 173 | 181 | 112 |
| 082091b4 | Unsupervised word embeddings capture latent knowledge from materials science literature | 641 | 113 | 158 | 159 | 211 |
| 6qv9r31x | Accelerated data-driven materials science with the Materials Project | 637 | 121 | 239 | 129 | 148 |
| 6st4b6sv | Octahedral Distortions Generate a Thermally Activated Phonon-Assisted Radiative Recombination Pathway in Cubic CsPbBr3 Perovskite Quantum Dots | 627 | 53 | 455 | 66 | 53 |
| 86x2n30b | Ultrafast materials synthesis and manufacturing techniques for emerging energy and environmental applications | 612 | 168 | 179 | 152 | 113 |
| 8n5931wh | Continuum Modeling of Porous Electrodes for Electrochemical Synthesis | 611 | 129 | 187 | 169 | 126 |
| 6q92n2qh | Non-topotactic reactions enable high rate capability in Li-rich cathode materials | 595 | 162 | 170 | 157 | 106 |
| 30v0j6cc | Python Materials Genomics (pymatgen): A robust, open-source python library for materials analysis | 588 | 155 | 171 | 148 | 114 |
| 96k425dv | Roadmap on methods and software for electronic structure based simulations in chemistry and materials | 569 | 120 | 180 | 145 | 124 |
| 50n7g0rb | Multi-scale physics of bipolar membranes in electrochemical processes | 532 | 135 | 161 | 151 | 85 |
| 5jp9q4n9 | Mechanisms of graphite ablation by sub-millisecond ytterbium fiber laser pulses | 529 | 144 | 144 | 141 | 100 |
| 8nr2f1jr | Impacts of Dissolved Iron on Alkaline Water Electrolysis Cells | 521 | 127 | 148 | 129 | 117 |
| 117547r6 | Closed-loop optimization of fast-charging protocols for batteries with machine learning | 512 | 135 | 156 | 114 | 107 |
| 52z236vf | Enhanced Electrochemical Performance of Disordered Rocksalt Cathodes in a Localized High‐Concentration Electrolyte | 508 | 138 | 150 | 109 | 111 |
| 33x8c70r | Distribution Grid Impacts of Community Solar | 503 | 126 | 161 | 125 | 91 |
| 6jn170sr | Matminer: An open source toolkit for materials data mining | 496 | 148 | 176 | 98 | 74 |
| 70n5p7mc | Reverse osmosis membrane biofouling: causes, consequences and countermeasures | 496 | 222 | 124 | 71 | 79 |
| 72972402 | An Algorithm for the Extraction of Tafel Slopes | 496 | 83 | 164 | 145 | 104 |
| 18h3f02f | Ultrathin ferroic HfO2–ZrO2 superlattice gate stack for advanced transistors | 494 | 95 | 146 | 130 | 123 |
| 7wr2k0s0 | Rational solvent molecule tuning for high-performance lithium metal battery electrolytes | 489 | 139 | 124 | 100 | 126 |
| 0xw1799d | Performance comparison of r2SCAN and SCAN metaGGA density functionals for solid materials via an automated, high-throughput computational workflow | 480 | 134 | 125 | 111 | 110 |
| 4p3409pp | Thermodynamic, Kinetic, and Transport Contributions to Hydrogen Evolution Activity and Electrolyte-Stability Windows for Water-in-Salt Electrolytes | 477 | 117 | 137 | 124 | 99 |
| 2mt97497 | Automated defect identification in electroluminescence images of solar modules | 476 | 149 | 126 | 119 | 82 |
| 0zv8g528 | Titanium porous-transport layers for PEM water electrolysis prepared by tape casting | 470 | 114 | 136 | 116 | 104 |
| 1kx651jr | Layered-rocksalt intergrown cathode for high-capacity zero-strain battery operation | 469 | 114 | 143 | 110 | 102 |
| 6px3m7ks | Synchrotron X‑ray Analytical Techniques for Studying Materials Electrochemistry in Rechargeable Batteries | 469 | 116 | 136 | 133 | 84 |
| 0w20x1dp | Nickel–Iron Oxyhydroxide Oxygen-Evolution Electrocatalysts: The Role of Intentional and Incidental Iron Incorporation | 468 | 140 | 142 | 106 | 80 |
| 7hn2q4p0 | Analysis and improvement of the hot disk transient plane source method for low thermal conductivity materials | 468 | 85 | 117 | 109 | 157 |
| 0fr1q984 | Temperature-adaptive radiative coating for all-season household thermal regulation | 457 | 156 | 112 | 91 | 98 |
| 53q6z8c7 | Assessing cathode–electrolyte interphases in batteries | 453 | 97 | 120 | 131 | 105 |
| 1n31d32q | Anion-Exchange-Membrane Electrolysis with Alkali-Free Water Feed | 452 | 108 | 124 | 128 | 92 |
| 0g73k6kn | Scalable Surface Micro-Texturing of LLZO Solid Electrolytes for Battery Applications | 451 | 112 | 130 | 114 | 95 |
| 0kd1p37x | A US perspective on closing the carbon cycle to defossilize difficult-to-electrify segments of our economy | 446 | 101 | 119 | 120 | 106 |
| 8cc5m7jh | Argyrodite-Li6PS5Cl/Polymer-based Highly Conductive Composite Electrolyte for All-Solid-State Batteries | 446 | 109 | 143 | 145 | 49 |
| 3rq1k2zq | Liquid electrolyte development for low-temperature lithium-ion batteries | 443 | 125 | 124 | 117 | 77 |
| 0sj353dg | Benchmarking Coordination Number Prediction Algorithms on Inorganic Crystal Structures | 442 | 98 | 199 | 81 | 64 |
| 42822028 | Absolute band-edge energies are over-emphasized in the design of photoelectrochemical materials | 440 | 96 | 116 | 128 | 100 |
| 1x05d4mb | High-Entropy Spinel Oxide Ferrites for Battery Applications | 438 | 60 | 301 | 46 | 31 |
| 42g8g6mx | Exploring CO2 reduction and crossover in membrane electrode assemblies | 437 | 96 | 147 | 107 | 87 |
| 5mq08362 | Theory and Simulation of Metal–Insulator–Semiconductor (MIS) Photoelectrodes | 431 | 92 | 128 | 109 | 102 |
| 7j3826wj | Thermal Stability of LiPF6 Salt and Li-ion Battery Electrolytes Containing LiPF6 | 430 | 90 | 131 | 92 | 117 |
| 7841b84v | Metal-supported solid oxide fuel cells operating with reformed natural gas and sulfur | 423 | 98 | 118 | 102 | 105 |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.