Publications by authors named "Xinyu Da"

Article Synopsis
  • Unstable interphase in traditional carbonate-based electrolytes hampers lithium metal batteries (LMBs) using high-capacity nickel-rich layered oxides across various temperatures.
  • A new bifunctional electrolyte (EAFP) with 1,3-propanesultone improves interfacial stability and ion transport, resulting in a robust cathode-electrolyte interface.
  • The optimized EAFP enables long-lasting performance of Li||Li cells at diverse temperatures (-40 °C to 60 °C) and shows compatibility with other cathodes, paving the way for improved interphase regulation in all-weather LMBs.
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Gel polymer electrolytes (GPEs) hold great promise for the practical application of lithium metal batteries. However, conventional GPEs hardly resists lithium dendrites growth and maintains long-term cycling stability of the battery due to its poor mechanical performance. Inspired by the slide-ring structure of polyrotaxanes (PRs), herein we developed a dynamic slide-crosslinked gel polymer electrolyte (SCGPE) with extraordinary stretchability of 970.

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A biocatalytic approach for the synthesis of metaxalone and its analogues was developed based on the reaction of epoxides and cyanate catalyzed by halohydrin dehalogenase. Gram-scale synthesis of chiral and racemic metaxalone was achieved with 44% (98% ) and 81% yields, respectively, by protein engineering of the halohydrin dehalogenase HHDHamb from . Additionally, various metaxalone analogues were synthesized at 28-40% yields (90-99% ) for chiral forms and 77-92% yields for racemic forms.

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Article Synopsis
  • Enantiopure β-nitroalcohols are vital for synthesizing pharmaceutical compounds, particularly β-adrenergic blockers.
  • The study showcases the engineered enzyme HHDHamb, which allows for the selective bio-nitration of phenyl glycidyl ethers to produce chiral β-nitroalcohols using safe nitrite nitrating agents.
  • The method achieved high yields and optical purity, and successfully synthesized two enantiomers of the β-adrenergic blocker metoprolol using these β-nitroalcohols as starting materials.
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Phase separation is a trivial phenomenon but a mature strategy in materials science. The flexible materials are provided toughness and strength by phase separation, yet there are few applications in optics and electronics industry. A novel phase-separated dielectric gel (PSDG) with a strong Christiansen effect is prepared via radical polymerization using hydroxyethyl methacrylate as a monomer, 4-cyano-4'-pentylbiphenyl and tributyl citrate as mixed solvents, and polyethylene glycol as a softener.

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Due to the unique safety qualities, solid composite polymer electrolyte (SCPE) has achieved considerable attentions to fabricate high-energy-density lithium metal batteries, but its overall performance still has to be improved. Herein, a high lithium salt content poly(vinylidene fluoride) (PVDF)-based SCPE was developed, enhanced by hexagonal boron nitride (h-BN) nanosheets, presenting perfect electrochemical performance, fast ion transport, and efficient inhibition of lithium dendrite growth. The optimized SCPE (PVDF-L70-B5) could deliver high ionic conductivity (2.

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The photoelastic effect has many uses in mechanics today, but it is usually disregarded in flexible materials. Using 2-phenoxyethyl acrylate as a monomer and 4-cyano-4'-pentylbiphenyl (5CB) as a solvent, a multiple responsive photoelastic organogel (PO) with strong birefringence but low modulus is created. 5CB is a liquid crystal molecule that does not participate in the polymerization process and is always present as tiny molecules in the polymer.

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Uncontrolled dendrite formation in the high energy density of lithium (Li) metal batteries (LMBs) may pose serious safety risks. While numerous studies have attempted to protect separators, these proposed methods fail to effectively inhibit upward dendrite growth that punctures through the separator. Here, we introduce a novel "orientated-growth" strategy that transfers the main depositional interface to the anode/current collector interface from the anode/separator interface.

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