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DRT-S Public
This repository contains some of the source code used for the paper titled 'Entropy-based regularized regression for advanced distribution of relaxation times deconvolution' in the Journal of Power…
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This repository contains some of the source code used for the paper titled 'From Beyond Ridge Regression: Enhancing Distribution of Relaxation Times Deconvolution' in the Journal of the Electrochem…
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FFT-DRT- Public
This repository contains some of the source code used for the paper titled Fast Fourier Transform-Based Distribution of Relaxation Times Analysis for Efficient and Flexible Time-Domain Electrochemi…
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DRTtools Public
An intuitive MATLAB GUI to compute the DRT
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AgentLaboratory Public
Forked from SamuelSchmidgall/AgentLaboratoryAgent Laboratory is an end-to-end autonomous research workflow meant to assist you as the human researcher toward implementing your research ideas
Python MIT License UpdatedAug 20, 2025 -
langextract Public
Forked from google/langextractA Python library for extracting structured information from unstructured text using LLMs with precise source grounding and interactive visualization.
Python Apache License 2.0 UpdatedAug 9, 2025 -
pyDRTtools Public
An intuitive python GUI to compute the DRT
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deep-DRT Public
deep-DRT model to deconvolves the DRT from multidimensional EIS data
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DNN-DRT Public
Deconvolution of electrochemical impedance spectroscopy data using the deep-neural-network-enhanced distribution of relaxation times
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fGP-DRT Public
The finite Gaussian Process Distribution of Relaxation Times
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pyECRtools Public
pyECRtools: A Python Toolbox for Electrical Conductivity Relaxation (ECR) Analysis and Optimization
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ECRtools Public
ECRtools: A MATLAB Toolbox for Electrical Conductivity Relaxation (ECR) Analysis and Optimization
MATLAB MIT License UpdatedDec 28, 2024 -
quasiGP Public
The quasi-Gaussian Process Distribution of Relaxation Times
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GP-HT Public
Gaussian Process Hilbert Transform
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DP-DRT Public
Deep Prior Distribution of Relaxation Times
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GP-DRT Public
Gaussian Process Distribution of Relaxation Times
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