• 1832 Citations
  • 21 h-Index
19992019
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Fingerprint Dive into the research topics where Shanhai Ge is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 2 Similar Profiles
Dehydrogenation Engineering & Materials Science
Membranes Engineering & Materials Science
Electrolytes Chemical Compounds
Carbon Chemical Compounds
Catalysts Engineering & Materials Science
Butane Engineering & Materials Science
Butenes Engineering & Materials Science
membranes Physics & Astronomy

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Research Output 1999 2019

  • 1832 Citations
  • 21 h-Index
  • 53 Article
  • 6 Chapter
1 Citation (Scopus)

Activated carbon coated CNT core-shell nanocomposite for supercapacitor electrode with excellent rate performance at low temperature

Xu, J., Wang, X., Zhou, X., Yuan, N., Ge, S. & Ding, J., Apr 1 2019, In : Electrochimica Acta. 301, p. 478-486 9 p.

Research output: Contribution to journalArticle

Activated carbon
Nanocomposites
Electrodes
Capacitance
Temperature

All-Climate Battery Technology for Electric Vehicles: Inching Closer to the Mainstream Adoption of Automated Driving

Yang, X., Ge, S., Wu, N., Mao, Y., Sun, F. & Wang, C., Mar 1 2019, IEEE Electrification Magazine, 7, 1, p. 12-21 10 p.

Research output: Contribution to specialist publicationArticle

Electric vehicles
Sales
Railroad cars

Extending the low temperature operational limit of Li-ion battery to −80 °C

Xu, J., Wang, X., Yuan, N., Ding, J., Qin, S., Razal, J. M., Wang, X., Ge, S. & Gogotsi, Y., Jan 1 2019, In : Energy Storage Materials.

Research output: Contribution to journalArticle

Electrolytes
Lithium
Temperature
Low temperature operations
Electrodes
1 Citation (Scopus)

Graphite-based lithium ion battery with ultrafast charging and discharging and excellent low temperature performance

Xu, J., Wang, X., Yuan, N., Hu, B., Ding, J. & Ge, S., Aug 1 2019, In : Journal of Power Sources. 430, p. 74-79 6 p.

Research output: Contribution to journalArticle

Graphite
charging
electric batteries
graphite
lithium
2 Citations (Scopus)

Temperature-independent capacitance of carbon-based supercapacitor from −100 to 60 °C

Xu, J., Yuan, N., Razal, J. M., Zheng, Y., Zhou, X., Ding, J., Cho, K., Ge, S., Zhang, R., Gogotsi, Y. & Baughman, R. H., Jan 1 2019, In : Energy Storage Materials.

Research output: Contribution to journalArticle

Electrolytes
Capacitance
Carbon
Electrodes
Freezing