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  1. 4181
    “…EV‐AQ(2) exhibits a high initial capacity of 199.2 mAh g(−1) at 0.1 C rate, which corresponds to the transfer of two electrons from one redox couple EV(2+)/EV(0) and four electrons from two redox‐active AQ(−) anions. …”
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  2. 4182
    “…To decrease the limit of detection (LOD) of imaging extracellular ATP, we fabricated a redox-type label-free ATP image sensor by immobilizing glycerol-kinase (GK), L-α-glycerophosphate oxidase (LGOx), and horseradish peroxidase (HRP) enzymes in a polymer film on a gold electrode-modified potentiometric sensor array with a 37.3 µm-pitch. …”
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  3. 4183
    “…The multifunctional protein apurinic/apyrimidinic endonuclease-1/redox factor-1 (APE1/Ref-1) is a new biomarker for vascular inflammation. …”
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  4. 4184
    “…In this study, we developed a novel method to fabricate active electronic components in a monolithic seamless fashion where both metal and semiconductor can be prepared from the same monolith material without creating a semiconductor–metal interface by reversible selective laser-induced redox (rSLIR) method. Furthermore, rSLIR can control the oxidation state of transition metal (Cu) to yield semiconductors with two different bandgap states (Cu(2)O and CuO with bandgaps of 2.1 and 1.2 eV, respectively), which may allow multifunctional sensors with multiple bandgaps from the same materials. …”
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  5. 4185
    “…Although the I(3)(−)/I(−) couple has become an established redox shuttle, it has disadvantages: its redox potential limits the values of the open-circuit voltage (V(OC)) in the DSC and its use creates a corrosive chemical environment within the DSC which impacts upon the long-term stability of the cells. …”
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  6. 4186
    “…Soluble redox mediators (RMs), an alternative to conventional solid catalysts, have been considered an effective countermeasure to ameliorate sluggish kinetics in the cathode of a lithium–oxygen battery recently. …”
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  7. 4187
  8. 4188
    “…Our study provides the first insight into how the cell redox system responds and adapts to InA phytotoxicity, providing a framework for further molecular studies.…”
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  9. 4189
    “…Herein, we have developed a copper (II) complex with redox-active ligand [Cu(L(1))(2)NO(3)]NO(3) (1, L(1) = 2-(6-methoxypyridin-2-yl)-6-nitro-1h-benzo [D] imidazole). …”
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  10. 4190
    “…The pathophysiology seems to be largely attributable to the imbalance of lipid and glucose metabolism, redox signaling pathways, and gut microbiota. The increased syndromes, such as type 2 diabetes and cardiovascular disease demands natural therapeutic attention for those at high risk. …”
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  11. 4191
    “…The oxygen redox reaction in lithium-rich layered oxide battery cathode materials generates extra capacity at high cell voltages (i.e., >4.5 V). …”
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  12. 4192
    “…In this study, we aimed to investigate the prognostic redox-associated genes and construct a redox-based prognostic signature for LUAD. …”
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  13. 4193
    “…Our work demonstrates an important role for p53-mediated redox control in facilitating the hepatic regenerative response after damage and identifies CYP2A5/CYP2A6 as a mediator of this pathway with potential prognostic utility in human HCC.…”
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  14. 4194
  15. 4195
    “…There are only several redox probes that were employed previously for this application, and a combination of redox probes affords some advantages in target detection. …”
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  16. 4196
    “…An oxidation/reduction cycle was examined, starting from solutions of K[2a] via P–P coupled product 4a and back to K[2a], and the recyclability and redox chemistry of this cycle were confirmed by experimental and simulated cyclic voltammetry analysis, which is proposed as a potential 2-electron cathode for rechargeable cells. …”
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  17. 4197
  18. 4198
  19. 4199
  20. 4200
    “…Here, we present the SP3-Rox redox proteomics method that combines tailored low cost isotopically labeled capture reagents with SP3 sample cleanup to achieve high throughput and high coverage proteome-wide identification of redox-sensitive cysteines. …”
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