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Published June 30, 2022 | Version 0.0.1
Software Open

ShiftML2

  • 1. Laboratory of Magnetic Resonance, Institute of Chemical Sciences and Engineering, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
  • 2. Theory of Condensed Matter Group, Cavendish Laboratory, University of Cambridge, J. J. Thomson Avenue, Cambridge CB3 0HE, United Kingdom.
  • 3. Laboratory of Computational Science and Modelling, Institute of Materials, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.

Description

ShiftML2: A machine learning model of chemical shifts for chemically and structurally diverse molecular solids

This record contains the ShiftML2 Python package.

Installation

First, download all files, unzip the ShiftML2.zip archive, and place all model files (.pk files) in the ShiftML2/models directory.

A script is available to create a Python environment containing all necessary packages to run ShiftML2. To install it, run the file:

./install_env.sh

If you already have a python environment containing the required packages, you can directly install the ShiftML2 package using:

pip install .

You can then test the installation by running the "example.ipynb" notebook.

Files

ShiftML2.zip

Files (18.9 GB)

Name Size Download all
md5:43623d97d7aafc54750027da12010965
51.5 kB Preview Download
md5:915ddef4e10c74b1d92215315500a289
3.6 GB Download
md5:0be6d72103c591f8239164f922fbbad4
26.5 MB Download
md5:d92aefad57270115a756fd3e301a8de5
989.8 MB Download
md5:71a8c7dc1b010f76857e2cc41bcf2e16
1.6 GB Download
md5:0155e4f88b00a52c7ee7555012961149
3.8 GB Download
md5:1d9e1ae13b2e8c97b82ff16cc216bfe3
46.7 MB Download
md5:407b0ee50683d1296e6d9480413cc165
12.0 MB Download
md5:2f0fce6d788c6b7c07d917454dcff6a5
3.7 GB Download
md5:7fd44392f47b46730e22d1adf5576dd7
54.2 MB Download
md5:421a80c90cdd54110dcbe96b94cb3ab5
3.8 GB Download
md5:6f1c6a6cdbb60de78ddb9cac0edf3ec0
380.0 MB Download
md5:8373a1dcc7065aec7dbc91d2f6cb17ab
1.1 GB Download

Additional details

Funding

Swiss National Science Foundation
Extending NMR crystallography to complex non-crystalline materials 200020_178860