Joule
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Joule, a sister journal to Cell, is a home for outstanding and insightful research, analysis and ideas addressing a key global challenge: the need for more sustainable energy. Joule is a distinctive and forward-looking journal, bridging disciplines and scales of energy research. Joule connects all who are researching and analyzing the challenges — scientific, technical, economic, policy and social — of providing sustainable energy solutions. Joule spans scales of energy research, from fundamental laboratory research into energy conversion and storage up to impactful analysis at the global level. Joule will purposefully highlight and amplify the implications, challenges and opportunities of novel energy research for different groups working across the entire spectrum of the field. Source
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| Scope | International |
|---|---|
| Language | English |
| Country | United States of America |
|
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Comscore UVM |
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| Frequency | Other |
| Accepts contributed content | Yes |
Recent Articles
Search ArticlesSite-dominant quantum-cutting nanocrystals enable silicon photovoltaics exceeding 100% external quantum efficiency
Keywords multiple-exciton generation quantum cutting CsPbCl₃:Yb nanocrystals Yb ion-site occupancy external quantum efficiency Get full text access Log in, subscribe or purchase for full access. References 1. Green, M.A. ∙ Bremner, S.P. Energy conversion approaches and materials for high-efficiency photovoltaics Nat. Mater. 2016; 16:23-34 2. Richter, A. ∙ Hermle, M. ∙ Glunz, S.W. Reassessment of the limiting efficiency for crystalline silicon solar cells IEEE J. Photovolt. 2013; 3:1184-1191 3. Polman, A.
Electrochemical reactions under reverse bias create additional mobile ions that enable hole tunneling in metal halide perovskite diodes
Keywords perovskite diode photovoltaic cells reverse bias tunneling electrochemistry ion migration Get full text access Log in, subscribe or purchase for full access. References 2. Chen, H. ∙ Liu, C. ∙ Xu, J. ... Improved charge extraction in inverted perovskite solar cells with dual-site-binding ligands Science. 2024; 384:189-193 3. Jamesh, M.I., Tong, H., Du, M., Niu, W., Jia, G., Cheng, K.C., Hsieh, C.W., Shen, H.H., Xu, B., Tian, Y., et al.
Structural batteries from concept to deployment
Get full text access Log in, subscribe or purchase for full access. References 1. Chaudhary, R. ∙ Asp, L.E. ∙ Chaudhary, V. Redefining batteries as multifunctional materials Nat. Rev. Mater. 2026; 2. Thomas, J.P. ∙ Qidwai, M.A. The design and application of multifunctional structure-battery materials systems Jom. 2005; 57:18-24 3. Janek, J. ∙ Zeier, W.G. A solid future for battery development Nat. Energy. 2016; 1:16141 4. Pomerantseva, E. ∙ Bonaccorso, F. ∙ Feng, X. ...
High energy-density, fast-chargeable lithium-ion batteries by mechanically interlocked polymers
Keywords high energy density fast charging silicon anode polymeric binders calendering high electrode density stress dissipation mechanically interlocked polymers mechanical motions topological entanglements Introduction The high specific capacity and low redox potential of silicon (Si) make it an attractive anode material for lithium-ion batteries (LIBs).1,2,3 These properties are becoming more critical for so-called software-defined vehicles (SDVs) with their variety of new functions such...
Electrical double-layer dynamics regulation for maximized electrostatic energy harvesting of liquid-solid triboelectric nanogenerators
Keywords electrical double layer liquid-solid nanogenerators liquid-solid contact electrification charge density blue energy liquid-solid triboelectric nanogenerators electrostatic generators water-solid triboelectrification energy cycle Get full text access Log in, subscribe or purchase for full access. References 1. Wang, Z.L. Entropy theory of distributed energy for internet of things Nano Energy. 2019; 58:669-672 2. Zi, Y. ∙ Niu, S. ∙ Wang, J. ...
Rapidly constructed Ru-NiMn sites regulate the –CHO/–CH 2 OH pathway and deprotonate to elevate biomass-derived molecule electrooxidation
Keywords HMF reaction pathways catalysts electrocatalytic oxidation induction heating Get full text access Log in, subscribe or purchase for full access. References 1. Liu, G. ∙ Nie, T. ∙ Song, Z. ... Pd loaded NiCo hydroxides for biomass electrooxidation: Understanding the synergistic effect of proton deintercalation and adsorption kinetics Angew. Chem. Int. Ed. 2023; 62, e202311696 2. Liu, G. ∙ Lu, Y. ∙ Lu, J. ...
Accelerated pathways for China’s industrial decarbonization lower system costs and preserve the carbon budget
Keywords industrial decarbonization pathways carbon budget carbon mitigation technology cost energy consumption China Get full text access Log in, subscribe or purchase for full access. References 1. Bevacqua, E. ∙ Schleussner, C.-F. ∙ Zscheischler, J. A year above 1.5 °C signals that Earth is most probably within the 20-year period that will reach the Paris Agreement limit Nat. Clim. Chang. 2025; 15:262-265 2. Sanderson, B.M. Estimating vanishing allowable emissions for 1.5 °C Nat. Clim. Chang.
Electrochemically induced direct air capture via a redox-mediated aqueous flow system incorporating a solid proton-electron carrier
Keywords electrochemically induced direct air capture redox-mediated aqueous flow system solid proton-electron carrier proton-coupled electron transfer Get full text access Log in, subscribe or purchase for full access. References 1. Sanz-Pérez, E.S. ∙ Murdock, C.R. ∙ Didas, S.A. ... Direct capture of CO2 from ambient air Chem. Rev. 2016; 116:11840-11876 2. McQueen, N. ∙ Gomes, K.V. ∙ McCormick, C. ...
Interface-mediated crystallization enables PEDOT:PSS-free all-perovskite tandems with 29.1% efficiency and enhanced durability
Keywords metal-halide perovskite tandem solar cells self-assembled monolayer hole-transport materials stability Get full text access Log in, subscribe or purchase for full access. References 1. Kojima, A. ∙ Teshima, K. ∙ Shirai, Y. ... Organometal Halide Perovskites as Visible-Light Sensitizers for Photovoltaic Cells J. Am. Chem. Soc. 2009; 131:6050-6051 2. Xiao, K. ∙ Lin, Y.-H. ∙ Zhang, M. ... Scalable processing for realizing 21.7%-efficient all-perovskite tandem solar modules Science. 2022; 376:762-767 3.
Interfacial ion depletion at high concentration guides electrolyte design for aqueous aluminum-iodine batteries
Keywords aqueous multivalent batteries aluminum-iodine batteries concentrated electrolytes bulk-interface decoupling choline chloride additive interfacial ion regulation solvation structure water-in-salt electrolyte design polyiodide confinement Introduction Aqueous aluminum batteries (AABs) have recently emerged as a promising class of aqueous energy storage systems due to their intrinsic safety, cost-effectiveness, and high theoretical volumetric capacity (∼8,040 mAh cm−3 for Al3+).1,2,3...