Electrospun Wood‐Derived Biopolymers as Electrodes in Electrochemical Energy Storage Technologies
Electrospinning transforms wood‐derived cellulose and lignin into architecturally defined, binder‐free carbon electrodes with tuneable porosity and functionality. This review shows how fibre design enables decoupled charge and mass transport, enhancing performance across battery systems, while identifying key challenges in spinnability, scalability ...
Michael W. Thielke +3 more
wiley +1 more source
A DFT study on hydrogen diffusion across zinc surfaces at low coverage. [PDF]
Buga M +5 more
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Ferroelectric nanoclusters create local internal fields in a normally non‐switchable polar film because of polarization mismatch at their interfaces. That field opposes polarization in the regions with larger polarization and reinforces polarization in the regions with smaller polarization.
Anna N. Morozovska +5 more
wiley +1 more source
Volumetric Single-Molecule Tracking Inside Subcellular Structures. [PDF]
Daly S +8 more
europepmc +1 more source
Harnessing non-equilibrium forces to optimize work extraction. [PDF]
Olsen KS +3 more
europepmc +1 more source
Temporal Anti-Parity-Time Symmetry: Extending Non-Hermitian Physics to Time-Domain Dynamics in Thermal Diffusion. [PDF]
Yan H, Li Y.
europepmc +1 more source
Confounder-aware foundation modeling for accurate phenotype profiling in cell imaging. [PDF]
Papanastasiou G +4 more
europepmc +1 more source
<i>G</i>-Subdiffusion Equation as an Anomalous Diffusion Equation Determined by the Time Evolution of the Mean Square Displacement of a Diffusing Molecule. [PDF]
Kosztołowicz T +2 more
europepmc +1 more source
Fine-Tuning Unifies Foundational Machine-Learned Interatomic Potential Architectures at <i>ab initio</i> Accuracy. [PDF]
Hänseroth J +3 more
europepmc +1 more source
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Exact Sampling of Jump-Diffusions
SSRN Electronic Journal, 2011This paper develops a method for the exact simulation of a skeleton, a hitting time, and other functionals of a one-dimensional jump diffusion with state-dependent drift, volatility, jump intensity, and jump size. The method requires the drift function to be C1, the volatility function to be C2, and the jump intensity function to be locally bounded ...
Kay Giesecke, Dmitry Smelov
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