Publications by authors named "Wen-Qi Cui"

An ingenious microstructure of electromagnetic microwave absorption materials is crucial to achieve strong absorption and a broad bandwidth. Herein, one-dimensional (1D) carbon fibers with implantation of zero-dimensional (0D) ZIF-8-derived carbon frameworks and construction of a three-dimensional (3D) microcosmic multichannel porous structure are fabricated by electro-blown spinning, solvent-thermal reaction, and high-temperature pyrolysis techniques. The 1D carbon fiber skeleton with a multichannel structure provides a direct axial conductive pathway for charge transport, which plays an important role in dielectric loss.

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Article Synopsis
  • Researchers have developed lightweight, elastic, and superhydrophobic aerogels made from a combination of organic aramid nanofibers and inorganic carbon fibers, which enhances their multifunctionality.
  • These new aerogels demonstrate excellent properties, including significant compressibility, elasticity, and the ability to absorb electromagnetic microwaves with a strong reflection loss of -41.8 dB and a bandwidth of 6.86 GHz.
  • Additionally, they are highly effective in purifying oily wastewater, with an oil adsorption capacity of 93.167 g/g and the ability to separate trichloromethane from mixtures with impressive flow rates for various applications.
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Caffeine is a purine alkaloid and is widely consumed in coffee, soda, tea, chocolate and energy drinks. To date, a growing number of studies have indicated that caffeine is associated with many diseases including colorectal cancer. Caffeine exerts its biological activity through binding to adenosine receptors, inhibiting phosphodiesterases, sensitizing calcium channels, antagonizing gamma-aminobutyric acid receptors and stimulating adrenal hormones.

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Colorectal cancer (CRC), a multifactorial disease, is usually induced and developed through complex mechanisms, including impact of diet and lifestyle, genomic abnormalities, change of signaling pathways, inflammatory response, oxidation stress, dysbiosis, and so on. As natural polyphenolic phytochemicals that exist primarily in tea, tea polyphenols (TPs) have been shown to have many clinical applications, especially as anticancer agents. Most animal studies and epidemiological studies have demonstrated that TPs can prevent and treat CRC.

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