All Stories

  1. High-Throughput Screening of Geopolymerization Kinetics for Rapid Mixture Design Optimization
  2. Influence of solvents on electrochemical stability window of ionic liquid solutions
  3. Trends and limits of CO2 capture in solid and liquid sorbents at standard conditions
  4. Ionic Liquid-Enhanced Interfaces to Boost Reactive CO 2 Capture
  5. Toward dynamic crystal structure prediction: integrating thermodynamic and kinetic modeling
  6. Ionic liquid catalyzes reactive CO 2 capture
  7. Stabilizing calcium nitride for efficient, long-term electrochemical ammonia synthesis
  8. Directed Evolution of Pre-Catalyst Improves Pulsed-Electrochemical Conversion of CO 2 to Ethanol-Rich Crude
  9. Electrochemical Determination of CO 2 Solubility in Ionic Liquids Using High-Throughput Approach
  10. Synthesis of Carboxylates via Nonaqueous Electrochemical CO 2 Capture and Conversion
  11. Recent innovations and assessment of ammonia synthesis at an industrial scale
  12. Ionic Liquid Catalyzes Reactive CO2 capture
  13. Mechanistic insights into metal-organic framework thin film growth from microkinetic analysis of in situ X-ray scattering data
  14. Toward a Distributed Nitrate Economy
  15. Field‐Deployable Ammonia Sensor for Assessment of Wastewater Feedstocks and Their Utilization for Ammonia Synthesis
  16. Predictive Modeling and Experimental Validation of Magnetophoretic Delivery of Magnetic Nanocultures
  17. Advancements in Emulsion Technologies for Efficient and Sustainable CO2 Capture and Gas Absorption
  18. Magnesium‐Mediated Electrochemical Synthesis of Ammonia
  19. Tetraethylammonium Cation Activates Fe for Selective Electroreduction of CO2 to Oxalate
  20. Analytical solution to the discretized population balance equation for pure breakage with application to kernel identification
  21. Identifying High Ionic Conductivity Compositions of Ionic Liquid Electrolytes Using Features of the Solvation Environment
  22. Next-Generation Computational and Experimental Tools for Understanding Nucleation and Growth of Metal–Organic Frameworks
  23. Screening transition metal electrodes for achieving near 100% selectivity to urea via electroreduction of NO3− and CO2 at 100 mA cm−2 current density
  24. Advancements in dinitrogen activation for catalytic breakthroughs
  25. Non‐Aqueous Electrochemical CO2 Reduction to Multivariate C2‐Products Over Single Atom Catalyst at Current Density up to 100 mA cm−2
  26. Metal–Organic Framework-Templated Synthesis of Nickel–Alumina Nanocatalysts Improves Catalyst–Support Interaction for Higher Activity and Stability in Biogas Reforming under Controlled Oxidizing Conditions
  27. Understanding Activity Trends in Electrochemical Dinitrogen Oxidation over Transition Metal Oxides
  28. Role of Intermolecular Interactions in Deep Eutectic Solvents for CO2 Capture: Vibrational Spectroscopy and Quantum Chemical Studies
  29. High-throughput measurements of CO2 permeance and solubility in ionic liquid reveal a synergistic role of ionic interactions and void fractions
  30. Metal Nitride as a Mediator for the Electrochemical Synthesis of NH3
  31. Simplified Universal Equations for Ionic Conductivity and Transference Number
  32. Effect of K+ Force Fields on Ionic Conductivity and Charge Dynamics of KOH in Ethylene Glycol
  33. Pathway toward Scalable Energy-Efficient Li-Mediated Ammonia Synthesis
  34. Sequential Hydrolysis of Metal Oxo Clusters Drives Polymorphism in Electrodeposited Zirconium Metal–Organic Frameworks
  35. Engineering advancements in microfluidic systems for enhanced mixing at low Reynolds numbers
  36. High-pressure electrochemistry: a new frontier in decarbonization
  37. System-level feasibility analysis of a novel chemical looping combustion integrated with electrochemical CO2 reduction
  38. Theory-Enabled High-Throughput Screening of Ion Dissociation Explains Conductivity Enhancements in Diluted Ionic Liquid Mixtures
  39. (Invited) Design, Assessment, and Performance Evaluation of an Fully-Integrated Electrochemical Process for Direct Capture of CO2 from Flue Gas and Its Conversion to High-Purity Ethylene
  40. Advancements in Environmentally Sustainable Technologies for Ethylene Production
  41. Emulsification of Supersaturated Solutions Amplifies Induction Time Variation in Crystallization
  42. Percolation-assisted coating of metal-organic frameworks on porous substrates
  43. Microkinetic insights into the role of catalyst and water activity on the nucleation, growth, and dissolution during COF-5 synthesis
  44. Chloride-Promoted High-Rate Ambient Electrooxidation of Methane to Methanol on Patterned Cu–Ti Bimetallic Oxides
  45. Preventing Over-Electrodialysis for Efficient CO2 Capture from Seawater
  46. Three-Step Mechanism of Antisolvent Crystallization
  47. Sustainable Routes for Photo-Electrochemical Synthesis of Ammonia Using Various Nitrogen Precursors
  48. Enhanced intrathecal drug dispersion achieved by high volume injection and natural micromixing
  49. Machine Learning-Driven, Sensor-Integrated Microfluidic Device for Monitoring and Control of Supersaturation for Automated Screening of Crystalline Materials
  50. Autocatalysis and Oriented Attachment Direct the Synthesis of a Metal–Organic Framework
  51. In-line measurement of liquid–liquid phase separation boundaries using a turbidity-sensor-integrated continuous-flow microfluidic device
  52. On-the-spot quenching for effective implementation of cooling crystallization in a continuous-flow microfluidic device
  53. Selective desolvation in two-step nucleation mechanism steers crystal structure formation
  54. (Invited) H2-Free, Highly-Selective Electrocatalytic Reduction of Nitrates to Ammonia with Solar-to-Ammonia Efficiency >5%
  55. Temperature-induced pH changes govern hydrate transformation during cooling crystallization of potassium acid phthalate
  56. Fundamental insight into electrochemical oxidation of methane towards methanol on transition metal oxides
  57. Advanced continuous-flow microfluidic device for parallel screening of crystal polymorphs, morphology, and kinetics at controlled supersaturation
  58. Solar-driven electrochemical synthesis of ammonia using nitrate with 11% solar-to-fuel efficiency at ambient conditions
  59. Competing Effects of pH, Cation Identity, H2O Saturation, and N2 Concentration on the Activity and Selectivity of Electrochemical Reduction of N2 to NH3 on Electrodeposited Cu at Ambient Conditions
  60. Constitutive relationship and governing physical properties for magnetophoresis
  61. Organophilicity of Graphene Oxide for Enhanced Wettability of ZnO Nanorods
  62. Solvent fluctuations in the solvation shell determine the activation barrier for crystal growth rates
  63. Modeling and Simulation of Crystallization of Metal–Organic Frameworks
  64. An Experimental- and Simulation-Based Evaluation of the CO2 Utilization Efficiency of Aqueous-Based Electrochemical CO2 Reduction Reactors with Ion-Selective Membranes
  65. Assessment of Artificial Photosynthetic Systems for Integrated Carbon Capture and Conversion
  66. Continuous-flow, well-mixed, microfluidic crystallization device for screening of polymorphs, morphology, and crystallization kinetics at controlled supersaturation
  67. Cellular Obstruction Clearance in Proximal Ventricular Catheters Using Low-Voltage Joule Heating
  68. Continuum-scale Modeling of Solar Water-splitting Devices
  69. Mechanistic insights into electrochemical reduction of CO 2 over Ag using density functional theory and transport models
  70. Evaluation of flow schemes for near-neutral pH electrolytes in solar-fuel generators
  71. Modeling, Simulation, and Implementation of Solar‐Driven Water‐Splitting Devices
  72. Modellierung, Simulation und Implementierung von Zellen für die solargetriebene Wasserspaltung
  73. Hydrolysis of Electrolyte Cations Enhances the Electrochemical Reduction of CO2 over Ag and Cu
  74. Ambient-Pressure XPS Study of a Ni–Fe Electrocatalyst for the Oxygen Evolution Reaction
  75. Design of an artificial photosynthetic system for production of alcohols in high concentration from CO2
  76. Effects of temperature and gas–liquid mass transfer on the operation of small electrochemical cells for the quantitative evaluation of CO2reduction electrocatalysts
  77. Thermodynamic and achievable efficiencies for solar-driven electrochemical reduction of carbon dioxide to transportation fuels
  78. Differential Electrochemical Mass Spectrometer Cell Design for Online Quantification of Products Produced during Electrochemical Reduction of CO2
  79. Improving the Gas Barrier Properties of Nafion via Thermal Annealing: Evidence for Diffusion through Hydrophilic Channels and Matrix
  80. Effects of electrolyte, catalyst, and membrane composition and operating conditions on the performance of solar-driven electrochemical reduction of carbon dioxide
  81. An electrochemical engineering assessment of the operational conditions and constraints for solar-driven water-splitting systems at near-neutral pH
  82. Measurement of Polar Plots of Crystal Dissolution Rates Using Hot-Stage Microscopy. Some Further Insights into Dissolution Morphologies
  83. Population Balance Modeling: Current Status and Future Prospects
  84. Dispersions in crystal nucleation and growth rates: Implications of fluctuation in supersaturation
  85. An experimental and modeling/simulation-based evaluation of the efficiency and operational performance characteristics of an integrated, membrane-free, neutral pH solar-driven water-splitting system
  86. A Comprehensive Approach to Predicting Crystal Morphology Distributions with Population Balances
  87. Screening Crystal Morphologies from Crystal Structure
  88. Image-Analysis-Based Method for 3D Crystal Morphology Measurement and Polymorph Identification Using Confocal Microscopy
  89. Modeling of crystal morphology distributions. Towards crystals with preferred asymmetry
  90. Influence of Cryogenic Grinding on Release of Protein and DNA from Saccharomyces cerevisiae