Title : How Gas-Solid Interaction Matters in Graphene-Doped Silica Aerogels.

Pub. Date : 2022 Feb 22

PMID : 35129991






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1 How Gas-Solid Interaction Matters in Graphene-Doped Silica Aerogels. Graphite gastrin Homo sapiens
2 Inspired by the visualization of the 3D pore structure, we proposed a graphene/silica/nitrogen model to evaluate the role of graphene in heat conduction: it can not only reduce effective gas collision (impede heat transport) but also enhance the gas-solid coupling effect. Graphite gastrin Homo sapiens
3 Inspired by the visualization of the 3D pore structure, we proposed a graphene/silica/nitrogen model to evaluate the role of graphene in heat conduction: it can not only reduce effective gas collision (impede heat transport) but also enhance the gas-solid coupling effect. Graphite gastrin Homo sapiens
4 Inspired by the visualization of the 3D pore structure, we proposed a graphene/silica/nitrogen model to evaluate the role of graphene in heat conduction: it can not only reduce effective gas collision (impede heat transport) but also enhance the gas-solid coupling effect. Graphite gastrin Homo sapiens
5 Inspired by the visualization of the 3D pore structure, we proposed a graphene/silica/nitrogen model to evaluate the role of graphene in heat conduction: it can not only reduce effective gas collision (impede heat transport) but also enhance the gas-solid coupling effect. Graphite gastrin Homo sapiens