Chemical and Biomolecular Engineering - Open Access Policy Deposits
Parent: Chemical and Biomolecular Engineering
eScholarship stats: History by Item for May through August, 2026
| Item | Title | Total requests | 2026-08 | 2026-07 | 2026-06 | 2026-05 |
|---|---|---|---|---|---|---|
| 51z9m46x | Proton Exchange Membrane (PEM) Water Electrolysis: Cell-Level Considerations for Gigawatt-Scale Deployment | 931 | 233 | 178 | 286 | 234 |
| 5qb7v6qb | Mechanisms of Pulsed Laser Ablation of Biological Tissues | 691 | 261 | 156 | 112 | 162 |
| 8451j1m7 | Retinal organoids on-a-chip: a micro-millifluidic bioreactor for long-term organoid maintenance | 490 | 87 | 87 | 138 | 178 |
| 8n5931wh | Continuum Modeling of Porous Electrodes for Electrochemical Synthesis | 489 | 83 | 90 | 129 | 187 |
| 1q390115 | Mechanically activated ion channel Piezo1 modulates macrophage polarization and stiffness sensing | 441 | 140 | 79 | 112 | 110 |
| 4kj8x6qs | Enhancing water and oxygen transport through electrode engineering for AEM water electrolyzers | 400 | 104 | 78 | 112 | 106 |
| 2gz1j3mh | Single-atom tailoring of platinum nanocatalysts for high-performance multifunctional electrocatalysis | 398 | 82 | 110 | 86 | 120 |
| 73c4p975 | Properties and application of carbon quantum dots (CQDs) in biosensors for disease detection: A comprehensive review | 384 | 72 | 91 | 105 | 116 |
| 42822028 | Absolute band-edge energies are over-emphasized in the design of photoelectrochemical materials | 380 | 102 | 66 | 96 | 116 |
| 2571t424 | Potentially Confusing: Potentials in Electrochemistry | 378 | 83 | 89 | 80 | 126 |
| 86z260ck | A knowledge-guided pre-training framework for improving molecular representation learning | 377 | 125 | 47 | 121 | 84 |
| 83m894pd | Foundation Models for Zero-Shot Segmentation of Scientific Images without AI-Ready Data | 374 | 71 | 60 | 150 | 93 |
| 4kh3t8d3 | Shorter Is Better: The α‑(l)‑Threofuranosyl Nucleic Acid Modification Improves Stability, Potency, Safety, and Ago2 Binding and Mitigates Off-Target Effects of Small Interfering RNAs | 370 | 87 | 58 | 87 | 138 |
| 1n31d32q | Anion-Exchange-Membrane Electrolysis with Alkali-Free Water Feed | 346 | 60 | 54 | 108 | 124 |
| 3t33r5wz | Large-scale investigation of the effects of nucleobase sequence on fluorescence excitation and Stokes shifts of DNA-stabilized silver clusters | 345 | 13 | 10 | 15 | 307 |
| 1gk8m36j | Tuning immunity through tissue mechanotransduction | 334 | 114 | 47 | 91 | 82 |
| 9d13f71d | Cu Promoted the Dynamic Evolution of Ni-Based Catalysts for Polyethylene Terephthalate Plastic Upcycling | 322 | 62 | 87 | 82 | 91 |
| 3hz354rb | Nanotechnology for COVID-19: Therapeutics and Vaccine Research | 319 | 68 | 60 | 88 | 103 |
| 5qh5q5tt | Amorphous nickel hydroxide shell tailors local chemical environment on platinum surface for alkaline hydrogen evolution reaction | 309 | 81 | 55 | 83 | 90 |
| 93f328pw | Asymmetric Bipolar Membrane for High Current Density Electrodialysis Operation with Exceptional Stability | 296 | 60 | 82 | 77 | 77 |
| 4m528580 | YAP-mediated mechanotransduction tunes the macrophage inflammatory response | 295 | 80 | 39 | 77 | 99 |
| 9b75b37b | Crosstalk Between CD11b and Piezo1 Mediates Macrophage Responses to Mechanical Cues | 287 | 69 | 48 | 67 | 103 |
| 302634tf | Synthesis, Purification, and Characterization of Carbon Dots from Non-Activated and Activated Pyrolytic Carbon Black | 285 | 54 | 43 | 94 | 94 |
| 5rk847dd | Durability of Pt‐Alloy Catalyst for Heavy‐Duty Polymer Electrolyte Fuel Cell Applications under Realistic Conditions | 284 | 78 | 59 | 74 | 73 |
| 2wf2k98v | Visualization and validation of twin nucleation and early-stage growth in magnesium | 283 | 53 | 56 | 90 | 84 |
| 9b5339jq | Unleashing the potential of cell membrane-based nanoparticles for COVID-19 treatment and vaccination | 271 | 36 | 55 | 71 | 109 |
| 6k22b4gb | Transition Metal Chalcogenides as a Versatile and Tunable Platform for Catalytic CO2 and N2 Electroreduction | 270 | 53 | 49 | 73 | 95 |
| 08w3h8m9 | Pathway to Complete Energy Sector Decarbonization with Available Iridium Resources using Ultralow Loaded Water Electrolyzers | 267 | 72 | 63 | 66 | 66 |
| 5hs0d8jn | Probing Heterogeneous Degradation of Catalyst in PEM Fuel Cells under Realistic Automotive Conditions with Multi‐Modal Techniques | 266 | 83 | 53 | 56 | 74 |
| 9h80j5cw | Gerischer Electrochemistry Today | 259 | 70 | 38 | 66 | 85 |
| 6wb433qs | Transferability of the Electrostatic Parameters of the Polarizable Gaussian Multipole Model | 257 | 33 | 46 | 79 | 99 |
| 9v95w726 | Electrocatalysis: From Planar Surfaces to Nanostructured Interfaces | 253 | 69 | 43 | 78 | 63 |
| 7kz3w9dz | Acid and base generation via an electrochemical hydrogen-looping cell tailored for carbon removal applications | 251 | 56 | 48 | 56 | 91 |
| 76s0473c | How Pt Influences H2 Reactions on High Surface-Area Pt/CeO2 Powder Catalyst Surfaces | 250 | 52 | 49 | 73 | 76 |
| 713685w3 | Revealing in-plane movement of platinum in polymer electrolyte fuel cells after heavy-duty vehicle lifetime | 247 | 63 | 58 | 59 | 67 |
| 08w315cn | Two-Dimensional Graphitic Carbon Nitride (g-C3N4) Nanosheets and Their Derivatives for Diagnosis and Detection Applications | 246 | 63 | 20 | 63 | 100 |
| 1569x53m | Taking the “Waste” Out of “Wastewater” for Human Water Security and Ecosystem Sustainability | 246 | 82 | 64 | 37 | 63 |
| 16p7n03f | CAR-T design: Elements and their synergistic function | 242 | 42 | 39 | 90 | 71 |
| 5zr7d0qk | Understanding Performance Limitation of Liquid Alkaline Water Electrolyzers | 241 | 30 | 33 | 81 | 97 |
| 0sw3p7g7 | Highly Crystalline Multimetallic Nanoframes with Three-Dimensional Electrocatalytic Surfaces | 240 | 93 | 20 | 48 | 79 |
| 8br406dc | Photodriven heterogeneous charge transfer with transition-metal compounds anchored to TiO 2 semiconductor surfaces | 240 | 48 | 60 | 67 | 65 |
| 8m52k59q | Modeling, Simulation, and Implementation of Solar‐Driven Water‐Splitting Devices | 240 | 27 | 65 | 57 | 91 |
| 3r14b88j | Design of highly efficient coal-based integrated gasification fuel cell power plants | 239 | 95 | 38 | 38 | 68 |
| 0p75x195 | Pathways to electrochemical solar-hydrogen technologies | 238 | 35 | 60 | 54 | 89 |
| 0xk284wx | Detecting lithium plating dynamics in a solid-state battery with operando X-ray computed tomography using machine learning | 238 | 53 | 51 | 70 | 64 |
| 18m4q677 | Effect of Commercial Gas Diffusion Layers on Catalyst Durability of Polymer Electrolyte Fuel Cells in Varied Cathode Gas Environment | 237 | 49 | 23 | 55 | 110 |
| 5d84w426 | Novel carboxymethyl cellulose based nanocomposite: A promising biomaterial for biomedical applications | 237 | 40 | 42 | 58 | 97 |
| 20m5317q | Improving molecular property prediction through a task similarity enhanced transfer learning strategy | 233 | 94 | 26 | 63 | 50 |
| 10z2j8gb | Atomic Structure of Pt3Ni Nanoframe Electrocatalysts by in Situ X‑ray Absorption Spectroscopy | 232 | 31 | 49 | 56 | 96 |
| 5169m11d | Selective Formation of Acetic Acid and Methanol by Direct Methane Oxidation Using Rhodium Single-Atom Catalysts | 231 | 77 | 58 | 56 | 40 |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.