PRX Energy (@prx_energy) 's Twitter Profile
PRX Energy

@prx_energy

@APSphysics's interdisciplinary, #OpenAccess journal for high-impact #energy science and technology research. Free to publish until 2025!

ID: 1387772779735441408

linkhttps://journals.aps.org/prxenergy/ calendar_today29-04-2021 14:17:43

799 Tweet

1,1K Followers

115 Following

PRX Energy (@prx_energy) 's Twitter Profile Photo

#ICYMI: Computational study proposes that incorporating scandium, yttrium, and other dopant impurities into tin halide perovskites can decrease dark conductivity and significantly improve the open-circuit voltage of tin perovskite-based photovoltaics. go.aps.org/3RXh5uW

#ICYMI: Computational study proposes that incorporating scandium, yttrium, and other dopant impurities into tin halide perovskites can decrease dark conductivity and significantly improve the open-circuit voltage of tin perovskite-based photovoltaics.

go.aps.org/3RXh5uW
PRX Energy (@prx_energy) 's Twitter Profile Photo

#ICYMI: Researchers provide a comprehensive review of recent theoretical advancements in hydrogen storage and outline a general framework for achieving practical hydrogen uptake. Read the paper: go.aps.org/4kbOzl9

#ICYMI: Researchers provide a comprehensive review of recent theoretical advancements in hydrogen storage and outline a general framework for achieving practical hydrogen uptake.

Read the paper: go.aps.org/4kbOzl9
PRX Energy (@prx_energy) 's Twitter Profile Photo

#ICYMI: Based on a computational model conventionally used for studying query complexity, researchers develop a theoretical framework that quantifies and compares the energy consumption of quantum and classical computation. go.aps.org/3YHiVUw

#ICYMI: Based on a computational model conventionally used for studying query complexity, researchers develop a theoretical framework that quantifies and compares the energy consumption of quantum and classical computation. 

go.aps.org/3YHiVUw
PRX Energy (@prx_energy) 's Twitter Profile Photo

#ICYMI: Results from the Joint European Torus provide the first demonstration of an advanced burn control scheme in a power plant-relevant deuterium-tritium plasma that can inform the development of burn controllers for future nuclear fusion reactors. 🔗 go.aps.org/43c01GI

#ICYMI: Results from the Joint European Torus provide the first demonstration of an advanced burn control scheme in a power plant-relevant deuterium-tritium plasma that can inform the development of burn controllers for future nuclear fusion reactors.

🔗 go.aps.org/43c01GI
Brookhaven Lab (@brookhavenlab) 's Twitter Profile Photo

New research shows why high salt concentrations produce the best performance in zinc-ion batteries.🔋 PRX Energy Stony Brook University #AI #EnergyStorage #NSLSII #CFNatBrookhaven #BrookhavenCS bnl.gov/newsroom/news.…

PRX Energy (@prx_energy) 's Twitter Profile Photo

You've got questions, we've got answers. We work with authors one on one to answer pre-submission questions, give feedback on papers, and communicate throughout the review process. 🤝 Information for authors: go.aps.org/4jgC8UG

You've got questions, we've got answers.

We work with authors one on one to answer pre-submission questions, give feedback on papers, and communicate throughout the review process. 🤝

Information for authors: go.aps.org/4jgC8UG
PRX Energy (@prx_energy) 's Twitter Profile Photo

#ICYMI: A new framework for describing ionic transport in nanopores highlights the importance of accounting for differences in ion diffusivities when modeling ionic transport and enhances the accuracy of impedance modeling for nanoporous electrodes. 🔗 go.aps.org/43w9b11

#ICYMI: A new framework for describing ionic transport in nanopores highlights the importance of accounting for differences in ion diffusivities when modeling ionic transport and enhances the accuracy of impedance modeling for nanoporous electrodes. 

🔗 go.aps.org/43w9b11
Brookhaven Lab (@brookhavenlab) 's Twitter Profile Photo

Scientists from Brookhaven Lab and Stony Brook University used #AI to help them understand how zinc-ion batteries work — and potentially how to make them more efficient for future #EnergyStorage needs. 🔋 PRX Energy #NSLSII #CFNatBrookhaven #BrookhavenCS bnl.gov/newsroom/news.…

Brookhaven Lab (@brookhavenlab) 's Twitter Profile Photo

Scientists have paired #AI with experimental validation to reveal the atomic-scale basis for improved performance in "water-in-salt" batteries.🔋 PRX Energy Stony Brook University #EnergyStorage #NSLSII #CFNatBrookhaven #BrookhavenCS bnl.gov/newsroom/news.…