H-Index & Metrics Best Publications

H-Index & Metrics

Discipline name H-index Citations Publications World Ranking National Ranking
Materials Science D-index 44 Citations 7,308 160 World Ranking 7415 National Ranking 1836

Overview

What is he best known for?

The fields of study he is best known for:

  • Polymer
  • Organic chemistry
  • Composite material

Yang Si mainly investigates Nanotechnology, Nanofiber, Electrospinning, Composite material and Chemical engineering. His Nanotechnology research is multidisciplinary, incorporating elements of Fiber, Mesoporous material, Contact angle and Thermal stability. His Nanofiber research includes elements of Porosity, Carbon nanofiber, Polymerization and Adsorption.

His Electrospinning research is multidisciplinary, incorporating elements of Nanoparticle, Quartz crystal microbalance, Nano- and Polyacrylic acid. His Composite material research incorporates themes from Self-healing hydrogels and Oil water. His research integrates issues of Ultimate tensile strength and Organic chemistry in his study of Chemical engineering.

His most cited work include:

  • Ultralight nanofibre-assembled cellular aerogels with superelasticity and multifunctionality (473 citations)
  • Superelastic and Superhydrophobic Nanofiber-Assembled Cellular Aerogels for Effective Separation of Oil/Water Emulsions (378 citations)
  • An in situ polymerization approach for the synthesis of superhydrophobic and superoleophilic nanofibrous membranes for oil-water separation. (190 citations)

What are the main themes of his work throughout his whole career to date?

Yang Si focuses on Nanofiber, Chemical engineering, Electrospinning, Nanotechnology and Composite material. The various areas that he examines in his Nanofiber study include Fiber, Vinyl alcohol, Polymer, Polyaniline and Self-healing hydrogels. His Chemical engineering study also includes fields such as

  • Adsorption and related Protein purification and Selectivity,
  • Composite number and related Carbon nanofiber.

Yang Si has researched Electrospinning in several fields, including Photocatalysis, Nanoparticle, Polymer chemistry, Ceramic and Mesoporous material. His Nanotechnology research integrates issues from Wetting, Porosity, Contact angle and Polymerization. When carried out as part of a general Composite material research project, his work on Ultimate tensile strength, Thermal insulation, Thermal conductivity and Aerogel is frequently linked to work in Pseudoelasticity, therefore connecting diverse disciplines of study.

He most often published in these fields:

  • Nanofiber (40.24%)
  • Chemical engineering (36.69%)
  • Electrospinning (36.09%)

What were the highlights of his more recent work (between 2018-2021)?

  • Electrospinning (36.09%)
  • Chemical engineering (36.69%)
  • Nanofiber (40.24%)

In recent papers he was focusing on the following fields of study:

His scientific interests lie mostly in Electrospinning, Chemical engineering, Nanofiber, Nanotechnology and Composite material. His research in Electrospinning intersects with topics in Photocatalysis, Nanoparticle, Absorption and Ceramic. Yang Si combines subjects such as Porosity, Polyacrylonitrile, Filtration and Adsorption with his study of Chemical engineering.

In his research on the topic of Nanofiber, Carbonization is strongly related with Mesoporous material. His study brings together the fields of Self-healing hydrogels and Nanotechnology. His study in the field of Thermal insulation, Ultimate tensile strength, Thermal conductivity and Fiber is also linked to topics like Pseudoelasticity.

Between 2018 and 2021, his most popular works were:

  • Electrospun flexible nanofibrous membranes for oil/water separation (39 citations)
  • 3D Superelastic Scaffolds Constructed from Flexible Inorganic Nanofibers with Self‐Fitting Capability and Tailorable Gradient for Bone Regeneration (39 citations)
  • Highly Carboxylated, Cellular Structured, and Underwater Superelastic Nanofibrous Aerogels for Efficient Protein Separation (38 citations)

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Electrospun Nanofibers: Solving Global Issues

Yang Si;Xiaomin Tang;Jianyong Yu;Bin Ding.
Materials Today (2006)

1324 Citations

Ultralight nanofibre-assembled cellular aerogels with superelasticity and multifunctionality

Yang Si;Jianyong Yu;Xiaomin Tang;Jianlong Ge.
Nature Communications (2014)

499 Citations

Superelastic and Superhydrophobic Nanofiber-Assembled Cellular Aerogels for Effective Separation of Oil/Water Emulsions

Yang Si;Qiuxia Fu;Xueqin Wang;Jie Zhu.
ACS Nano (2015)

411 Citations

An in situ polymerization approach for the synthesis of superhydrophobic and superoleophilic nanofibrous membranes for oil-water separation.

Yanwei Shang;Yang Si;Aikifa Raza;Liping Yang.
Nanoscale (2012)

212 Citations

Ultralight Biomass-Derived Carbonaceous Nanofibrous Aerogels with Superelasticity and High Pressure-Sensitivity.

Yang Si;Xueqin Wang;Chengcheng Yan;Liu Yang.
Advanced Materials (2016)

194 Citations

In situ polymerized superhydrophobic and superoleophilic nanofibrous membranes for gravity driven oil–water separation

Xiaomin Tang;Yang Si;Jianlong Ge;Bin Ding.
Nanoscale (2013)

190 Citations

Ultralight and fire-resistant ceramic nanofibrous aerogels with temperature-invariant superelasticity

Yang Si;Xueqin Wang;Lvye Dou;Jianyong Yu.
Science Advances (2018)

157 Citations

Synthesis of mesoporous magnetic [email protected] nanofibers utilizing in situ polymerized polybenzoxazine for water purification

Yang Si;Tao Ren;Bin Ding;Jianyong Yu.
Journal of Materials Chemistry (2012)

143 Citations

Porous materials for sound absorption

Leitao Cao;Qiuxia Fu;Yang Si;Bin Ding.
Composites Communications (2018)

139 Citations

Ultrahigh-Water-Content, Superelastic, and Shape-Memory Nanofiber-Assembled Hydrogels Exhibiting Pressure-Responsive Conductivity

Yang Si;Lihuan Wang;Xueqin Wang;Ning Tang.
Advanced Materials (2017)

132 Citations

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Best Scientists Citing Yang Si

Bin Ding

Bin Ding

Donghua University

Publications: 132

Jianyong Yu

Jianyong Yu

Donghua University

Publications: 128

Zhiguang Guo

Zhiguang Guo

Hubei University

Publications: 38

Xianfeng Wang

Xianfeng Wang

West Virginia University

Publications: 35

Tianxi Liu

Tianxi Liu

Jiangnan University

Publications: 33

Gang Sun

Gang Sun

University of California, Davis

Publications: 32

Shaohua Jiang

Shaohua Jiang

Nanjing Forestry University

Publications: 24

Yun-Ze Long

Yun-Ze Long

Qingdao University

Publications: 21

Lei Jiang

Lei Jiang

Chinese Academy of Sciences

Publications: 21

Salem S. Al-Deyab

Salem S. Al-Deyab

King Saud University

Publications: 21

Yuekun Lai

Yuekun Lai

Soochow University

Publications: 20

Andreas Greiner

Andreas Greiner

University of Bayreuth

Publications: 20

Bowen Cheng

Bowen Cheng

Tianjin Polytechnic University

Publications: 18

Seema Agarwal

Seema Agarwal

University of Bayreuth

Publications: 17

Chaobo Huang

Chaobo Huang

Nanjing Forestry University

Publications: 17

Mohamed H. El-Newehy

Mohamed H. El-Newehy

King Saud University

Publications: 16

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