Publications by authors named "Tang Pei"

Sulfur conversion reactions are the foundation of lithium-sulfur batteries but usually possess sluggish kinetics during practical battery operation. Herein, a high-entropy single-atom catalyst (HESAC) is synthesized for this process. In contrast to conventional dual-atom catalysts that form metal-metal bonds, the center metal atoms in HESAC are not bonded but exhibit long-range interactions at a sub-nanometer distance (<9 Å).

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Co-use of xylazine with opioids is a major health threat in the United States. However, a critical knowledge gap exists in the understanding of xylazine-induced pharmacological and pathological impact. Xylazine is mostly known as an agonist of α2-adrenergic receptors (α2-ARs), but its deleterious effects on humans cannot be fully reversed by the α2-AR antagonists, suggesting the possibility that xylazine targets receptors other than α2-ARs.

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Fish identification in the Red Sea, particularly in Saudi Arabia, has a long history. Because of the vast fish diversity in Saudi Arabia, proper species identification is required. Indeed, identifying fish species is critical for biodiversity conservation, food and drug safety, and sustainable fishery management.

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  • - Two specific strains (SCP14 and SCP15) were extracted from coral remains in Singapore, particularly in high-temperature conditions.
  • - The genomes of these strains were sequenced, which means their genetic makeup was analyzed and recorded.
  • - The genetic information revealed important elements that contribute to the health of coral, especially when they face temperature-related stress.
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  • The study focuses on the interaction between capacitive and memristive effects in electronic components, specifically exploring the concept of a supercapacitor-memristor called CAPistor.
  • The CAPistor utilizes non-linear ion transport in a specific metal-organic framework, allowing for different behaviors of ion conductivity based on voltage changes, resulting in hysteresis.
  • This innovative device combines features of supercapacitors and memristors, opening up new possibilities in energy storage applications, as well as fields like biomimetic ionics and neuromorphic computing.
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  • Corn is an important food crop that has mainly been used for animal feed and industrial purposes, with limited medicinal applications until recently.
  • Research has begun to uncover the potential health benefits of various corn wastes, such as silk, husks, and stalks, particularly in managing conditions like hyperlipidemia, which can lead to heart disease.
  • This article reviews how six types of corn wastes can help regulate lipid metabolism, providing a basis for further studies and development in their medicinal use.
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This paper describes a concise, asymmetric and stereodivergent total synthesis of tacaman alkaloids. A key step in this synthesis is the biocatalytic Baeyer-Villiger oxidation of cyclohexanone, which was developed to produce seven-membered lactones and establish the required stereochemistry at the C14 position (92 % yield, 99 % ee, 500 mg scale). Cis- and trans-tetracyclic indoloquinolizidine scaffolds were rapidly synthesized through an acid-triggered, tunable acyl-Pictet-Spengler type cyclization cascade, serving as the pivotal reaction for building the alkaloid skeleton.

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Background: Balance disorders can give rise to sensations of instability, lightheadedness, vertigo, disequilibrium, or syncope, ultimately leading to grave medical, physical, emotional, and societal ramifications. These conditions are highly prevalent among individuals aged 40 and above. Screen time encompasses activities associated with television viewing, video game playing, and non-work-related computer usage.

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We have successfully accomplished a catalytic asymmetric total synthesis of entecavir, a first-line antihepatitis B virus medication. The pivotal aspect of our strategy lies in the utilization of a Pd-catalyzed enyne borylative cyclization reaction, enabling the construction of a highly substituted cyclopentene scaffold with exceptional stereoselectivity. Additionally, we efficiently accessed the crucial 1,3-diol enyne system early in our synthetic route through a diarylprolinol organocatalyzed enantioselective cross-aldol reaction and Re-catalyzed allylic alcohol relocation.

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  • - Malignant insulinoma is a rare and aggressive pancreatic tumor, but the mechanisms behind its development and spread are still not fully understood.
  • - This study investigates the role of Serum amyloid P component (SAP) in insulinoma by using genetically modified mice, finding that the absence of SAP enhances tumor growth and metastasis.
  • - The research indicates that SAP influences the secretion of a particular signaling molecule (CXCL12) from surrounding cancer-supporting cells, suggesting that targeting SAP could be a potential treatment for malignant insulinoma.
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PDZ domains are modular domains that conventionally bind to C terminal or internal motifs of target proteins to control cellular functions through the regulation of protein complex assemblies. Almost all reported structures of PDZ-target protein complexes rely on fragments or peptides as target proteins. No intact target protein complexed with PDZ was structurally characterized.

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  • The instability of the electrode-electrolyte interface and limited electrochemical window of typical electrolytes restrict the use of high-voltage sodium metal batteries, which is linked to how electrolytes organize around cations.
  • The researchers developed a new electrolyte combining ethyl (2,2,2-trifluoroethyl) carbonate and fluoroethylene carbonate, improving cation-anion coordination and enhancing sodium plating/stripping efficiency with a 98.0% Coulombic efficiency.
  • This new electrolyte shows impressive performance in high-voltage sodium cells, achieving 20 C rate capability and maintaining 87.1% capacity after 250 cycles, suggesting a promising approach for stabilizing sodium metal batteries and potentially other battery types.
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For electrolytes with conventional lithium salt concentration, it is not easy to generate sufficient anion-derived beneficial inorganic components to stabilize the electrolyte-lithium metal anode interface due to the repulsion of the free-state anions by the anode. In this study, the above issues are solved through the strong interaction between electronegative materials and lithium ions (Li ). A locally high Li concentration strategy is proposed by preparing micro-arrays of electronegative nano-hydroxyapatite (nHA) on the Cu foil.

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  • Accurately predicting the charging state of lithium-ion batteries can prevent overcharging and overdischarging, ultimately extending battery life.
  • A new prediction method combines convolutional layers, multi-head attention, and gated cycle units to capture data features across different spatial and temporal dimensions.
  • Tests conducted using the University of Maryland dataset showed this model achieved low mean absolute error (0.53%), root mean square error (0.67%), and maximum prediction error (0.4%), outperforming other predictive models.
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  • The research focuses on understanding how the facial and dental structure affects the occurrence of buccally displaced canines (BDC) in adolescents, specifically comparing those with BDC to those without.
  • A sample of 100 adolescents with BDC (average age 13.05) was analyzed alongside a control group of 100 without BDC (average age 12.59), using digital imaging techniques for precise measurements.
  • Findings showed that adolescents with BDC had a narrower dental arch and a higher palatal vault, and the analysis indicated that a smaller width between the first premolars could significantly lead to the development of BDC.
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Recently, ethanol has shown promising potential in the large-scale reduction of graphene oxide (GO) into graphene. However, dispersion of GO powder in ethanol is a challenge due to its poor affinity, which hinders permeation and intercalation of ethanol between GO molecule layers. In this paper, phenyl-modified colloidal silica nanospheres (PSNS) were synthesized by phenyl-tri-ethoxy-silane (PTES) and tetra-ethyl -silicate (TEOS) using a sol-gel method.

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  • (-)-Adenophorone (1) is a unique tricyclic compound derived from the plant Eupatorium adenopharum, and its structure was confirmed through advanced analytical techniques including X-ray crystallography.* -
  • A total synthesis of (-)-Adenophorone was performed, efficiently synthesizing the related compound (+)-euptox A (2) in just eight steps using commercially available materials and demonstrating effective control over molecule orientation.* -
  • The synthesized (-)-Adenophorone exhibited significant neuroprotective properties in tested cell lines, supporting its potential therapeutic application and providing insights into its biosynthetic pathway.*
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  • Li metal anodes have the potential for high-energy-density batteries but suffer from rapid capacity loss due to the formation of inactive Li, known as dead Li, especially under high current draw.
  • The study proposes using ordered lithiophilic micro-grooves on copper foil to control Li nucleation sites, which improves the morphology of Li deposition.
  • By managing Li deposits in these grooves, the structure becomes denser and smoother, reducing side reactions and dead Li formation, ultimately enhancing the lifespan and stability of Li metal batteries.
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The α7 nicotinic acetylcholine receptor (α7nAChR) mediates signaling in the central nervous system and cholinergic anti-inflammatory pathways. Ivermectin is a positive allosteric modulator of a full-length α7nAChR and an agonist of the α7nAChR construct containing transmembrane (TMD) and intracellular (ICD) domains, but structural insights of the binding have not previously been determined. Here, combining nuclear magnetic resonance as a primary experimental tool with Rosetta comparative modeling and molecular dynamics simulations, we have revealed details of ivermectin binding to the α7nAChR TMD + ICD and corresponding structural changes in an ivermectin-induced desensitized state.

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A deficiency of the functional α7 nicotinic acetylcholine receptor (α7nAChR) impairs neuronal and immune systems. The SARS-CoV-2 spike protein (S12) facilitates virus cell entry during COVID-19 infection and can also independently disrupt cellular functions. Here, we found that S12 expression significantly downregulated surface expression of α7nAChR in mammalian cells.

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  • The paper discusses a unique occurrence of multiple conformers in certain alkaloids due to changes in the A-ring structure.
  • It explores various factors that may lead to the formation of these isomers, such as specific substituents, pH levels, solvents, and intramolecular hydrogen bonding.
  • The research highlights the complex interactions involved in the generation of these conformational isomers, influenced by preparation and treatment methods.
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Supercapacitor diode (CAPode) is a novel device that integrates ion diode functionality into a conventional electrical double-layer capacitor and is expected to have great applications in emerging fields such as signal propagation, microcircuit rectification, logic operations, and neuromorphology. Here, a brand new pseudocapacitor diode is reported that has both high charge storage (50.2 C g at 20 mV s ) and high rectification (the rectification ratio of 0.

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Mechanical precision corn seed-metering planter has a compact structure, missed and repeated seeding advantages during high-speed operation. In this regard, the current research study focuses on the development of a corn seed planter that features an inclined seed-metering device. The spatial layout of the seed-metering device is optimized to change the seed-filling mode to meet the needs of high-speed operation.

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Objective: Edible bird's nest (EBN) is a popular traditional tonic food in Chinese population for centuries. Malaysia is one of the main EBN suppliers in the world. This study aims to explore the best strategy to boost the antioxidant potential of EBN solution.

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  • The study investigates the health benefits of mulberry fruits (MF) and leaves (ML), emphasizing their potential as sources of functional foods due to their nutraceutical properties.
  • Researchers conducted submerged fermentation with various microorganisms to enhance the bioactivities of MF and ML, focusing on antioxidant, anti-inflammatory, and hypoglycemic effects.
  • Results showed that fermentation generally improved the bioactivities of both MF and ML, though the specific effects varied by type of microbial culture used, with significant increases in certain antioxidant and inhibition activities after fermentation.
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