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Amy C. Marschilok

Researcher Next ID · RN-041837

Researcher · Engineering

Brookhaven National Laboratory

Upton, Czechia

Accepting doctoral researchersFunding unknown
Works count
537
Citation count
14,490
H-index
60
i10-index
241

Research interests

Engineering
Materials Science
Advancements in Battery Materials
Advanced Battery Materials and Technologies
Advanced Battery Technologies Research
Supercapacitor Materials and Fabrication
Advanced battery technologies research

Publications

  • Assessing cathode–electrolyte interphases in batteries

    Nature Energy · 2024 · 10.1038/s41560-024-01639-y

  • Electron and Ion Transport in Lithium and Lithium-Ion Battery Negative and Positive Composite Electrodes

    Chemical Reviews · 2023 · https://doi.org/10.1021/acs.chemrev.2c00214

  • Gradient Design for High‐Energy and High‐Power Batteries

    Advanced Materials · 2022 · https://doi.org/10.1002/adma.202202780

  • Low-Tortuosity Thick Electrodes with Active Materials Gradient Design for Enhanced Energy Storage

    ACS Nano · 2022 · 10.1021/acsnano.2c00129

  • Tunable Porous Electrode Architectures for Enhanced Li-Ion Storage Kinetics in Thick Electrodes

    Nano Letters · 2021 · 10.1021/acs.nanolett.1c02142

  • Ultrahigh-Capacity and Scalable Architected Battery Electrodes via Tortuosity Modulation

    ACS Nano · 2021 · 10.1021/acsnano.1c06491

  • Regulating electrodeposition morphology in high-capacity aluminium and zinc battery anodes using interfacial metal–substrate bonding

    Nature Energy · 2021 · 10.1038/s41560-021-00797-7

  • From Fundamental Understanding to Engineering Design of High‐Performance Thick Electrodes for Scalable Energy‐Storage Systems

    Advanced Materials · 2021 · 10.1002/adma.202101275

  • Understanding Thickness-Dependent Transport Kinetics in Nanosheet-Based Battery Electrodes

    Chemistry of Materials · 2020 · 10.1021/acs.chemmater.9b05396

  • Multiscale Understanding and Architecture Design of High Energy/Power Lithium‐Ion Battery Electrodes

    Advanced Energy Materials · 2020 · https://doi.org/10.1002/aenm.202000808

  • Spontaneous and field-induced crystallographic reorientation of metal electrodeposits at battery anodes

    Science Advances · 2020 · 10.1126/sciadv.abb1122

  • Quantitative temporally and spatially resolved X-ray fluorescence microprobe characterization of the manganese dissolution-deposition mechanism in aqueous Zn/α-MnO 2 batteries

    Energy & Environmental Science · 2020 · 10.1039/d0ee02168g

  • Reversible epitaxial electrodeposition of metals in battery anodes

    Science · 2019 · https://doi.org/10.1126/science.aax6873

  • Promoting Transport Kinetics in Li-Ion Battery with Aligned Porous Electrode Architectures

    Nano Letters · 2019 · 10.1021/acs.nanolett.9b03824

  • SWNT Anchored with Carboxylated Polythiophene “Links” on High-Capacity Li-Ion Battery Anode Materials

    Journal of the American Chemical Society · 2018 · 10.1021/jacs.8b00693

  • Investigation of α-MnO2 Tunneled Structures as Model Cation Hosts for Energy Storage

    Accounts of Chemical Research · 2018 · 10.1021/acs.accounts.7b00478

  • Nanostructured Conductive Polymer Gels as a General Framework Material To Improve Electrochemical Performance of Cathode Materials in Li-Ion Batteries

    Nano Letters · 2017 · 10.1021/acs.nanolett.6b05227

  • A Tunable 3D Nanostructured Conductive Gel Framework Electrode for High‐Performance Lithium Ion Batteries

    Advanced Materials · 2017 · 10.1002/adma.201603922

  • Synthesis of cryptomelane type α-MnO 2 (K x Mn 8 O 16 ) cathode materials with tunable K + content: the role of tunnel cation concentration on electrochemistry

    Journal of Materials Chemistry A · 2017 · 10.1039/c7ta03476h

  • Progress towards high-power Li/CF x batteries: electrode architectures using carbon nanotubes with CF x

    Physical Chemistry Chemical Physics · 2015 · 10.1039/c5cp03217b

  • In situ visualization of Li/Ag 2 VP 2 O 8 batteries revealing rate-dependent discharge mechanism

    Science · 2015 · 10.1126/science.1257289

  • Nanocrystalline iron oxide based electroactive materials in lithium ion batteries: the critical role of crystallite size, morphology, and electrode heterostructure on battery relevant electrochemistry

    Inorganic Chemistry Frontiers · 2015 · 10.1039/c5qi00247h

  • Cathode materials for magnesium and magnesium-ion based batteries

    Coordination Chemistry Reviews · 2014 · https://doi.org/10.1016/j.ccr.2014.11.005

  • Batteries used to power implantable biomedical devices

    Electrochimica Acta · 2012 · https://doi.org/10.1016/j.electacta.2012.03.057

  • Transition-Metal Complexes Containing trans-Spanning Diphosphine Ligands

    Chemical Reviews · 2001 · 10.1021/cr990346w

Current projects

    No projects listed.