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Ph.D. Polymer & Colloidal Chemist | Emulsion Polymerization | Surface Chemistry | Nanoparticle Synthesis | 752+ Citation
Profile Summary
Subject Matter Expertise
Services
Writing
Technical Writing
Research
Scientific and Technical Research,
Systematic Literature Review,
Secondary Data Collection
Consulting
Scientific and Technical Consulting,
Manufacturing Consulting
Product Development
Formulation,
Product Validation,
Manufacturing
Work Experience
Senior Scinetist / Group Leader / Faculty
Bangs Laboratories Inc
June 2023 - Present
Postdoc
Shenzhen University
November 2017 - Present ![]()
PostdoctoralResearcher
University of Delaware
January 2022 - June 2023
PostdoctoralResearcher
Institute for Advanced Study, Shenzhen University
November 2017 - December 2021
Education
PhD (State Key Laboratory of Fine Chemicals)
Dalian University of Technology
September 2012 - June 2017 ![]()
Certifications
- Certification details not provided.
Publications
CONFERENCE PAPER
Max Sokolich, Sudipta Mallick, Zameer Hussain Shah, Yanda Yang, Sambeeta Das (2023). Cellular cargo manipulation using magnetically steerable microrobots in dense environments .
JOURNAL ARTICLE
Zameer Hussain Shah, Max Sokolich, Sudipta Mallick, David Rivas, Sambeeta Das (2023). Fabrication of three-lobed magnetic microrobots for cell transportation . Journal of Materials Chemistry B.
Xuemao Zhou, Shuo Wang, Longbin Xian, Zameer Hussain Shah, Yurou Li, Guanhua Lin, Yongxiang Gao (2021). Ionic Effects in Ionic Diffusiophoresis in Chemically Driven Active Colloids . Physical Review Letters.
Guanhua Lin, Longbin Xian, Xuemao Zhou, Shuo Wang, Zameer Hussain Shah, Scott A. Edwards, Yongxiang Gao(2020). Design and One-Pot Synthesis of Capsid-like Gold Colloids with Tunable Surface Roughness and Their Enhanced Sensing and Catalytic Performances . ACS Applied Materials & Interfaces. 12. (44). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 50152--50160. American Chemical Society ({ACS})
Zameer Hussain Shah, Shuo Wang, Longbin Xian, Xuemao Zhou, Yi Chen, Guanhua Lin, Yongxiang Gao(2020). Highly efficient chemically-driven micromotors with controlled snowman-like morphology . Chemical Communications. Royal Society of Chemistry ({RSC})
Shah, Z.H., Xu, X., Wang, S., Li, Y., Chen, Y., Shan, H., Gao, Y.(2019). Synthesis of two-patch particles with controlled patch size via nonequilibrium solidification of droplets on rods . Polymer. 177. Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 91-96.
Yuzhen Ge, Tianyu Gao, Cui Wang, Zameer Hussain Shah, Rongwen Lu, Shufen Zhang(2017). Highly efficient silica coated CuNi bimetallic nanocatalyst from reverse microemulsion . Journal of Colloid and Interface Science. 491. Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 123--132. Elsevier {BV}
Yuzhen Ge, Zameer Hussain Shah, Xi-Jie Lin, Rongwen Lu, Zhangming Liao, Shufen Zhang(2017). Highly Efficient Pt Decorated CoCu Bimetallic Nanoparticles Protected in Silica for Hydrogen Production from Ammonia–Borane . ACS Sustainable Chemistry & Engineering. 5. (2). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1675--1684. American Chemical Society ({ACS})
Yuzhen Ge, Wanyue Ye, Zameer Hussain Shah, Xijie Lin, Rongwen Lu, Shufen Zhang(2017). PtNi/NiO Clusters Coated by Hollow Sillica: Novel Design for Highly Efficient Hydrogen Production from Ammonia–Borane . ACS Applied Materials & Interfaces. 9. (4). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 3749--3756. American Chemical Society ({ACS})
Yuzhen Ge, Wanyue Ye, Zameer Hussain Shah, Xi-Jie Lin, Rongwen Lu, Shufen Zhang(2017). PtNi/NiO Clusters Coated by Hollow Sillica: Novel Design for Highly Efficient Hydrogen Production from Ammonia−Borane . ACS Applied Materials & Interfaces. American Chemical Society ({ACS})
Ge, Y., Shah, Z.H., Lin, X.-J., Lu, R., Liao, Z., Zhang, S.(2017). Highly efficient Pt decorated CoCu bimetallic nanoparticles protected in silica for hydrogen production from ammonia-borane . ACS Sustainable Chemistry and Engineering. 5. (2). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1675-1684.
Ge, Y., Ye, W., Shah, Z.H., Lin, X., Lu, R., Zhang, S.(2017). PtNi/NiO clusters coated by hollow sillica: Novel design for highly efficient hydrogen production from Ammonia-borane . ACS Applied Materials and Interfaces. 9. (4). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 3749-3756.
Shah, Z.H., Ge, Y., Ye, W., Lin, X.-J., Zhang, S., Lu, R.(2017). Visible light activation of SrTiO<inf>3</inf> by loading Ag/AgX (X = Cl, Br) for highly efficient plasmon-enhanced photocatalysis . Materials Chemistry and Physics. 198. Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 73-82.
Ge, Y., Gao, T., Wang, C., Shah, Z.H., Lu, R., Zhang, S.(2017). Highly efficient silica coated CuNi bimetallic nanocatalyst from reverse microemulsion . Journal of Colloid and Interface Science. 491. Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 123-132.
Shah, Z.H., Ge, Y., Lin, X., Xiu, J., Zhang, S., Lu, R.(2016). Chloride capping of CdTiO<inf>3</inf> for higher crystallinity and enhanced photocatalytic activity . Physical Chemistry Chemical Physics. 18. (3). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1637-1643.
Wang, C., Lin, X., Ge, Y., Shah, Z.H., Lu, R., Zhang, S.(2016). Silica-supported ultra small gold nanoparticles as nanoreactors for the etherification of silanes . RSC Advances. 6. (104). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 102102-102108.
Shah, Z.H., Wang, J., Ge, Y., Wang, C., Mao, W., Zhang, S., Lu, R.(2015). Highly enhanced plasmonic photocatalytic activity of Ag/AgCl/TiO<inf>2</inf> by CuO co-catalyst . Journal of Materials Chemistry A. 3. (7). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 3568-3575.
Ge, Y., Shah, Z.H., Wang, C., Wang, J., Mao, W., Zhang, S., Lu, R.(2015). In Situ Encapsulation of Ultrasmall CuO Quantum Dots with Controlled Band-Gap and Reversible Thermochromism . ACS Applied Materials and Interfaces. 7. (48). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 26437-26444.
Wang, J., Shah, Z.H., Zhang, S., Lu, R.(2014). Silica-based nanocomposites via reverse microemulsions: Classifications, preparations, and applications . Nanoscale. 6. (9). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 4418-4437.