[HTML][HTML] Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation

H Jeong, S Ryu, YN Kim, YM Ha, C Tewari, SY Kim… - Materials, 2022 - mdpi.com
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800° C and a self-heating shape memory …

Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation

H Jeong, S Ryu, YN Kim, YM Ha, C Tewari… - Materials, 2022 - ui.adsabs.harvard.edu
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800 C and a self-heating shape memory …

[HTML][HTML] Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation

H Jeong, S Ryu, YN Kim, YM Ha, C Tewari, SY Kim… - Materials, 2022 - ncbi.nlm.nih.gov
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800 C and a self-heating shape memory …

Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation

H Jeong, S Ryu, Y Kim, Y Ha, C Tewari… - Materials (Basel …, 2022 - europepmc.org
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800 C and a self-heating shape memory …

Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation

H Jeong, S Ryu, YN Kim, YM Ha, C Tewari… - …, 2022 - scholarworks.bwise.kr
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800 degrees C and a self-heating shape memory …

Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation

H Jeong, S Ryu, YN Kim, H Yu-Mi, C Tewari… - Materials, 2022 - search.proquest.com
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800 C and a self-heating shape memory …

Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation

H Jeong, S Ryu, YN Kim, YM Ha… - Materials (Basel …, 2022 - pubmed.ncbi.nlm.nih.gov
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800° C and a self-heating shape memory …

[PDF][PDF] Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation …

H Jeong, S Ryu, YN Kim, YM Ha, C Tewari, SY Kim… - 2022 - pdfs.semanticscholar.org
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800◦ C and a self-heating shape memory …

Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation.

H Jeong, S Ryu, YN Kim, YM Ha… - Materials (1996 …, 2022 - search.ebscohost.com
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800 C and a self-heating shape memory …

Easy, Fast Self-Heating Polyurethane Nanocomposite with the Introduction of Thermally Annealed Carbon Nanotubes Using Near-Infrared Lased Irradiation.

H Jeong, S Ryu, YN Kim, YM Ha, C Tewari… - Materials (Basel …, 2022 - europepmc.org
In this study, high-crystallinity single walled carbon nanotubes (H-SWNTs) were prepared by
high-temperature thermal annealing at 1800 C and a self-heating shape memory …