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Computational Design of Non-natural Sugar Alcohols to Increase Thermal Storage Density: Beyond Existing Organic Phase Change Materials
Taichi Inagaki
, Toyokazu Ishida
Research output
:
Contribution to journal
›
Article
›
peer-review
31
Citations (Scopus)
Overview
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Dive into the research topics of 'Computational Design of Non-natural Sugar Alcohols to Increase Thermal Storage Density: Beyond Existing Organic Phase Change Materials'. Together they form a unique fingerprint.
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Engineering & Materials Science
Sugar Alcohols
100%
Phase change materials
61%
Hot Temperature
26%
Isomers
20%
Carbon
15%
Molecular crystals
13%
Thermal energy
13%
Crystal structure
8%
Waste heat
7%
Electrostatics
7%
Atoms
7%
Molecules
6%
Elongation
6%
Energy conservation
5%
Chemical Compounds
Phase Change Material
69%
Energy
20%
Waste Heat
16%
Compound Isomer
15%
Molecular Crystal
13%
Carbon Atom
10%
Simulation
6%
Crystal Structure
5%
Amount
4%
Molecule
3%
Medicine & Life Sciences
Sugar Alcohols
87%
Hot Temperature
42%
Carbon
14%
Static Electricity
5%
Computer Simulation
4%
Technology
3%
Guidelines
3%