Zhenhua Li
Affiliations: | 2017-2017 | MSE | Beijing University of chemical Technology |
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Sign in to add mentorHua Zhang | grad student | 2017-2017 | Beijing University of chemical Technology |
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He C, Yan Y, Fu Y, et al. (2025) Incorporating Ordered Indium Sites into Rhodium for Ultra-Low Potential Electrocatalytic Conversion of Ethylene Glycol to Glycolic Acid. Advanced Materials (Deerfield Beach, Fla.). e2418959 |
Zhu L, Huang X, Li Z, et al. (2021) Evaluation of hepatotoxicity induced by 2-ethylhexyldiphenyl phosphate based on transcriptomics and its potential metabolism pathway in human hepatocytes. Journal of Hazardous Materials. 413: 125281 |
Li Z, Tang X, Zhu L, et al. (2020) Cytotoxic Screening and Transcriptomics Reveal Insights into the Molecular Mechanisms of Trihexyl Phosphate-triggered Hepatotoxicity. Environmental Science & Technology |
Cui J, Li Z, Li J, et al. (2020) An atomic-confined-space separator for high performance lithium–sulfur batteries Journal of Materials Chemistry. 8: 1896-1903 |
Li Z, Zhang X, Cheng H, et al. (2019) Confined Synthesis of 2D Nanostructured Materials toward Electrocatalysis Advanced Energy Materials. 10: 1900486 |
Li Z, Yang Q, Fan K, et al. (2018) Atom-economical construction of carbon nanotube architectures for flexible supercapacitors with ultrahigh areal and volumetric capacities Journal of Materials Chemistry. 6: 21287-21294 |
Xie W, Li Z, Shao M, et al. (2018) Layered double hydroxide-based core-shell nanoarrays for efficient electrochemical water splitting Frontiers of Chemical Engineering in China. 12: 537-554 |
Yang Q, Li Z, Zhang R, et al. (2017) Carbon modified transition metal oxides/hydroxides nanoarrays toward high-performance flexible all-solid-state supercapacitors Nano Energy. 41: 408-416 |
Li Z, Shao M, Yang Q, et al. (2017) Directed synthesis of carbon nanotube arrays based on layered double hydroxides toward highly-efficient bifunctional oxygen electrocatalysis Nano Energy. 37: 98-107 |
Zhang C, Shao M, Zhou L, et al. (2016) Hierarchical NiFe Layered Double Hydroxide Hollow Microspheres with Highly-Efficient Behavior toward Oxygen Evolution Reaction. Acs Applied Materials & Interfaces. 8: 33697-33703 |