Browse Issues:

EDITORIALS AND ANNOUNCEMENTS

Editorial: A Welcoming Home for Applied Science

Jessica Thomas and Michael Thoennessen

PRX Energy 1, 030001 (2022) - Published 12 October, 2022

HIGHLIGHTED ARTICLES

Sunlight-Driven Quantum Magnetometry

Yunbin Zhu, Yijin Xie, Ke Jing, Ziyun Yu, Huiyao Yu, Wenzhe Zhang, Xi Qin, Chang-Kui Duan, Xing Rong, and Jiangfeng Du

PRX Energy 1, 033002 (2022) - Published 17 October, 2022

A microwave-free quantum magnetometer directly driven by sunlight operates with greatly reduced electric power consumption.

PERSPECTIVES

Zeolite-Based Electrolytes: A Promising Choice for Solid-State Batteries

Malin Li, Xiwen Chi, and Jihong Yu

PRX Energy 1, 031001 (2022) - Published 21 December, 2022

Recent advances and future directions for developing zeolite-based solid electrolytes for solid-state batteries are presented, highlighting the advantages and functions of zeolite materials.

Importance of Thermal Transport for the Design of Solid-State Battery Materials

Matthias T. Agne, Thorben Böger, Tim Bernges, and Wolfgang G. Zeier

PRX Energy 1, 031002 (2022) - Published 22 December, 2022

Increasing demand for safe and reliable energy storage drives research in all-solid-state batteries, and better battery design motivates researchers to understand the thermal properties of battery materials.

ARTICLES

Thermodynamic Limits of Photon-Multiplier Luminescent Solar Concentrators

Tomi K. Baikie, Arjun Ashoka, Akshay Rao, and Neil C. Greenham

PRX Energy 1, 033001 (2022) - Published 13 October, 2022

A thermodynamic model for photon-multiplier luminescent solar concentrators (LSCs) is presented, and the achievable concentration limits are discussed and compared with traditional LSCs.

Sunlight-Driven Quantum Magnetometry

Yunbin Zhu, Yijin Xie, Ke Jing, Ziyun Yu, Huiyao Yu, Wenzhe Zhang, Xi Qin, Chang-Kui Duan, Xing Rong, and Jiangfeng Du

PRX Energy 1, 033002 (2022) - Published 17 October, 2022

A microwave-free quantum magnetometer directly driven by sunlight operates with greatly reduced electric power consumption.

Accurate Electronic Properties and Intercalation Voltages of Olivine-Type Li-Ion Cathode Materials from Extended Hubbard Functionals

Iurii Timrov, Francesco Aquilante, Matteo Cococcioni, and Nicola Marzari

PRX Energy 1, 033003 (2022) - Published 31 October, 2022

A comparative study of state-of-the-art simulations of cathode materials is presented: DFT+U+V shows reliability in predicting electrochemical properties of phospho-olivine cathode materials.

Impact-Loss-Compensated Wideband Vibrational Energy Harvesting Using a Hybrid BaTiO3/SU-8 Nanocomposite as the Active Layer

Nadeem Tariq Beigh, Sourav Naval, and Dhiman Mallick

PRX Energy 1, 033004 (2022) - Published 18 November, 2022

The authors demonstrate an impact-driven energy harvesting device with dual piezoelectric-triboelectric responses that compensate for impact power loss, improving the device’s energy harvesting efficiency for a number of practical applications.

Defending Smart Electrical Power Grids against Cyberattacks with Deep Q-Learning

Mohammadamin Moradi, Yang Weng, and Ying-Cheng Lai

PRX Energy 1, 033005 (2022) - Published 28 November, 2022

A deep reinforcement-learning strategy is developed for protecting large power transmission grid systems against cyberattacks.

Computational Identification of Ternary Wide-Band-Gap Oxides for High-Power Electronics

Emily M. Garrity, Cheng-Wei Lee, Prashun Gorai, M. Brooks Tellekamp, Andriy Zakutayev, and Vladan Stevanović

PRX Energy 1, 033006 (2022) - Published 20 December, 2022

Three classes of ternary oxides are identified as semiconductor candidates for high-power electronic devices using a high-throughput computational workflow and a review of doping and crystal growth feasibility.

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation