Shan Zhang

Shan Zhang
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Shan verified their affiliation via an institutional email.
Verified
Shan verified their affiliation via an institutional email.
  • PhD
  • PostDoc Position at Chalmers University of Technology

About

9
Publications
1,147
Reads
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164
Citations
Current institution
Chalmers University of Technology
Current position
  • PostDoc Position
Education
September 2016 - August 2018
Wageningen University & Research
Field of study
  • Environmental Science

Publications

Publications (9)
Article
Full-text available
Redox flow batteries (RFBs) are considered a promising technology for stationary energy storage. Organic redox flow batteries (OFBs) are emerging as alternatives to vanadium redox flow batteries (VFBs), since the former consist of cheap and abundant organic materials with the potential to offer lower environmental impacts. Despite numerous life cyc...
Book
Full-text available
Population growth, economic development, and the transition to electrification are increasing the demand for advanced battery technologies, thus driving the development of next-generation batteries across various applications. This thesis explores the environmental impacts of emerging battery technologies: an all-organic battery, all-solid-state ba...
Article
Full-text available
Strong interest from researchers and industry is accelerating development of flexible energy storage technologies for future flexible devices. It is critical to consider the environmental perspective in early development of new emerging technologies. In this study, cradle-to-factory gate prospective life cycle assessment (LCA) was performed on prod...
Article
Full-text available
Organic batteries are emerging as a potential sustainable power source for future flexible devices. Using life cycle assessment, this study analyzed the environmental impacts from the synthesis process for an all-organic battery with conducting redox polymers as active materials for electrodes. Synthesis steps were modeled and analyzed in detail, b...
Article
Mercury (Hg) and its derivatives pose a serious threat to the environment and human health because of their durability, easy transference, and high biological accumulation. Thus, the development of methods for selective and sensitive determination of Hg2+ is very important to understand its distribution and implement more detailed toxicological stu...
Article
The development of selective fluorescent probes for rapid and sensitive detection of hypochlorite anion (OCl−) is of great importance for biomedical researchers to investigate the detailed functions and mechanisms of OCl− in living systems. Herein, based on the internal charge transfer (ICT) mechanism, employing 2-dicyanomethylene-3-cyano-4,5,5-tri...

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