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Nan Sheng

ResearcherPublications, citations & collaboration network

Nan Sheng is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 207 works, 6,729 citations, an h-index of 48 and an i10-index of 121.

207
Works
6,729
Citations
48
h-index
121
i10-index

How has Nan Sheng's publication output changed over time?

ScholarIQpublication output · 2015–2024

Output declined67% over the shown period — from 3 works in 2015 to 1 in 2024.

3
2
1
2
1
1
1
2015201620182019202020222024

What are the most-cited papers on Nan Sheng?

ScholarIQmost cited works
Biopolymer-based hydrogel electrolytes for advanced energy storage/conversion devices: Properties, applications, and perspectives
Ting Xu, Kun Liu, Nan Sheng, Minghao Zhang, Wei Liu, Huayu Liu, Lin Dai, Xinyu Zhang, Chuanling Si, Haishun Du, Kai Zhang
S2764728150. 2022422 Citations
Microencapsulation of Metal-based Phase Change Material for High-temperature Thermal Energy Storage
Takahiro Nomura, Chunyu Zhu, Nan Sheng, Genki Saito, Tomohiro Akiyama
Scientific Reports. 2015229 CitationsOPEN ACCESS
Microencapsulated phase change materials with high heat capacity and high cyclic durability for high-temperature thermal energy storage and transportation
Takahiro Nomura, Nan Sheng, Chunyu Zhu, Genki Saito, Daiki Hanzaki, Takehito Hiraki, Tomohiro Akiyama
S109565702. 2016209 Citations
Macro-encapsulation of metallic phase change material using cylindrical-type ceramic containers for high-temperature thermal energy storage
Ryo Fukahori, Takahiro Nomura, Chunyu Zhu, Nan Sheng, Noriyuki Okinaka, Tomohiro Akiyama
S109565702. 2016197 Citations
High thermal conductivity phase change composite with percolating carbon fiber network
Takahiro Nomura, Kazuki Tabuchi, Chunyu Zhu, Nan Sheng, Shuangfeng Wang, Tomohiro Akiyama
S109565702. 2015173 Citations

Related on ScholarIQ

Sichuan University
Institution
Biopolymer-based hydrogel electrolytes for advanced energy storage/conversion devices: Properties, applications, and perspectives
Paper
Microencapsulation of Metal-based Phase Change Material for High-temperature Thermal Energy Storage
Paper
Microencapsulated phase change materials with high heat capacity and high cyclic durability for high-temperature thermal energy storage and transportation
Paper
Macro-encapsulation of metallic phase change material using cylindrical-type ceramic containers for high-temperature thermal energy storage
Paper
High thermal conductivity phase change composite with percolating carbon fiber network
Paper
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