Envíos recentes

  • A Simple Risk Assesment Method for Continental Waters, Based on Screening Contaminants of Emerging Concern 

    Santaballa, J. Arturo; Vozňáková, Alena; Marín, Zenydia; Canle, Moisés (Wiley, 2024)
    [Abstract] With the aim to build a simple alert system that may be of extended use, a screening for contaminants of emerging concern (CECs) is carried out in the Mero-Barcés hydrographic watershed, in Cecebre, A Coruña, ...
  • Solution-State Cooperative Luminescence Upconversion in Molecular Ytterbium Dimers 

    Avecilla, Fernando; Soro, Lohona K.; Knighton, Richard C.; Thor, Waygen; Przybilla, Frédéric; Jeannin, Olivier; Esteban-Gómez, David; Platas-Iglesias, Carlos; Charbonnière, Loïc J. (Wiley, 2023)
    [Abstract] Two homometallic ytterbium dimers are prepared and their solution-state photoluminescence and upconversion properties are investigated. Both complexes exhibit two-photon cooperative luminescence upconversion in ...
  • Associative pyridinium electrolytes for air-tolerant redox flow batteries 

    Carrington, Mark E.; Sokołowski, Kamil; Jónsson, Erlendur; Zhao, Evan Wenbo; Graf, Anton; Temprano, Israel; McCune, Jade A.; Grey, Clare; Scherman, Oren (Springer Nature, 2023-11-29)
    [Abstract]: Pyridinium electrolytes are promising candidates for flow-battery-based energy storage. However, the mechanisms underlying both their charge–discharge processes and overall cycling stability remain poorly ...
  • Synergistic Degradation Mechanism in Single Crystal Ni-Rich NMC//Graphite Cells 

    Paez Fajardo, Galo; Temprano, Israel; Piper, Louis (American Chemical Society, 2023-11-06)
    [Abstract]: Oxygen loss at high voltages in Ni-rich NMC//graphite Li-ion batteries promotes degradation, but increasing evidence from full cells reveals that the depth of discharge choice can further accelerate aging, i.e., ...
  • Binder-Free Cnt Cathodes for Li-O2 Batteries with More Than One Life 

    Su, Zeliang; Temprano, Israel; Demortière, Arnaud (Wiley-VCH, 2023-10-10)
    [Abstract]: Li-O2 batteries (LOB) performance degradation ultimately occurs through the accumulation of discharge products and irreversible clogging of the porous electrode during the cycling. Electrode binder degradation ...

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