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Steven N Ehrlich

Explore the profile of Steven N Ehrlich including associated specialties, affiliations and a list of published articles. Areas
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Articles 33
Citations 119
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Recent Articles
1.
Yu L, Dai A, Zhou T, Huang W, Wang J, Li T, et al.
Nat Commun . 2025 Jan; 16(1):434. PMID: 39762245
Recent efforts to reduce battery costs and enhance sustainability have focused on eliminating Cobalt (Co) from cathode materials. While Co-free designs have shown notable success in polycrystalline cathodes, their impact...
2.
Kingan A, Huang C, Mansley Z, Hill R, Wang Z, Bock D, et al.
ACS Nano . 2024 Dec; 18(51):34776-34790. PMID: 39670657
Significant demand for lithium-ion batteries necessitates alternatives to Co- and Ni-based cathode materials. Cation-disordered materials using earth-abundant elements are being explored as promising candidates. In this paper, we demonstrate a...
3.
Xie S, Liu L, Li Y, Ye K, Kim D, Zhang X, et al.
Nat Commun . 2024 Sep; 15(1):7988. PMID: 39284804
Internal combustion engine fueled by carbon-free hydrogen (H-ICE) offers a promising alternative for sustainable transportation. Herein, we report a facile and universal strategy through the physical mixing of Pt catalyst...
4.
Arnot D, Yan S, Pace A, Ma L, Ehrlich S, Takeuchi E, et al.
J Am Chem Soc . 2024 Sep; 146(38):26360-26368. PMID: 39259825
Nanoparticle suspensions hold promise to transform functionality of next-generation electrochemical systems including batteries, capacitors, wastewater treatment, and sensors, challenging the limits of existing electrochemical models. Classical solution-based electrochemistry assumes that...
5.
Xie S, Lu Y, Ye K, Tan W, Cao S, Wang C, et al.
Environ Sci Technol . 2024 Jul; 58(28):12731-12741. PMID: 38958431
Effective synthesis and application of single-atom catalysts on supports lacking enough defects remain a significant challenge in environmental catalysis. Herein, we present a universal defect-enrichment strategy to increase the surface...
6.
Mansley Z, Huang C, Luo J, Barry P, Rodriguez-Campos A, Millares M, et al.
Nano Lett . 2024 Jul; 24(28):8495-8501. PMID: 38950351
Layered lithiated oxides are promising materials for next generation Li-ion battery cathode materials; however, instability during cycling results in poor performance over time compared to the high capacities theoretically possible...
7.
Huang W, Liu T, Yu L, Wang J, Zhou T, Liu J, et al.
Science . 2024 May; 384(6698):912-919. PMID: 38781394
Transitioning from polycrystalline to single-crystalline nickel-rich cathodes has garnered considerable attention in both academia and industry, driven by advantages of high tap density and enhanced mechanical properties. However, cathodes with...
8.
Liu R, Huang W, Liu J, Li Y, Wang J, Liu Q, et al.
Adv Mater . 2024 May; 36(29):e2401048. PMID: 38760981
The emergence of layered sodium transition metal oxides featuring a multiphase structure presents a promising approach for cathode materials in sodium-ion batteries, showcasing notably improved energy storage capacity. However, the...
9.
Farrell S, Khwaja M, Paredes I, Oyuela C, Clarke W, Osinski N, et al.
J Phys Chem C Nanomater Interfaces . 2024 Mar; 128(11):4470-4482. PMID: 38533242
Tailoring nanoscale catalysts to targeted applications is a vital component in reducing the carbon footprint of industrial processes; however, understanding and controlling the nanostructure influence on catalysts is challenging. Molybdenum...
10.
Xie S, Tan W, Xu Y, Wang C, Feng Y, Ye K, et al.
J Hazard Mater . 2024 Feb; 466:133632. PMID: 38309164
Due to the capacity to offer abundant catalytic sites within porous solids featuring high surface areas, metal-organic frameworks (MOFs) and their derivatives have garnered considerable attention as prospective catalysts in...