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  1. junli guo. Hainan Medical University. Verified email at hainmc.edu.cn. Articles Cited by Public access. Title. Sort. Sort by citations Sort by year Sort by title.

  2. Junli Guo's 31 research works with 440 citations and 835 reads, including: Enantioselective Target Transport-Mediated Nanozyme Decomposition for the Identification of Reducing Enantiomers in ...

  3. Junli Guo. Trans-differentiation, or activation, of hepatic stellate cells (HSCs) is a hallmark event in liver fibrosis although the underlying mechanism is not fully appreciated. Serum response ...

  4. Sep 12, 2023 · Enantioselective identification of chiral molecules is regarded as one of the key issues in biological and medical sciences because of their configuration-dependent effects on biological systems. In this study, we developed an electrochemical platform based on a tandem recognition–reaction zone design in TiO2 nanochannels for the specific recognition of reducing enantiomers. In this system, MIL-125(Ti) Ti-metal–organic frameworks, in situ grown in TiO2 nanochannels, provided a homochiral ...

  5. Jan 23, 2015 · Guo Junli Jiang Wen Gone with the Bullets Let the Bullets Fly. Photo. Tang treasures from Arabic shipwreck are on show. Culture Insider: How to distinguish doucai, wucai, famille-rose and enamel ...

  6. Enantioselective identification of chiral molecules is regarded as one of the key issues in biological and medical sciences because of their configuration-dependent effects on biological systems. In this study, we developed an electrochemical platform based on a tandem recognition-reaction zone desi …

  7. Jan 23, 2023 · Aqueous electrolyte design is pivotal for boosting the energy density and lifespan of aqueous batteries, because it can expand the electrochemical stability window and also mitigate the parasitic side reactions. Until now, three main kinds of electrolytes, i.e., water-in-salt, eutectic, and additives-modified electrolytes, have been developed by which the activity of H2O can be lowered and/or the formed specific solid–electrolyte interphase (SEI) can mitigate the decomposition of H2O ...