Publications by authors named "XiMeng Chen"

Designing well-ordered, multifunctional layered membranes with high selectivity and long-term stability remains a significant challenge. Here, a simple strategy is introduced that utilizes charge repulsion between graphene oxide (GO) and engineered bacteria to induce liquid crystal formation, enabling their layer-by-layer self-assembly on a polyethersulfone membrane. The interlayer pressure flattens the bacteria, removing interlayer water and forming a densely packed structure.

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In this work, we performed a theoretical calculation of the negative ion conversion by a neutral carbon atom beam grazing scattering from the KI(100) surface. The Madelung potential, image potential, and ML-polarization interaction contributions are included in the calculation of the electron capture energy defect of the valence band near surface anion sites along the projectile incidence direction. The loss of the formed negative ions does not originate from the electron loss to the unoccupied conduction band or neutral exciton states but results from the Coulomb barrier tunneling detachment of the loosely bound affinity electron to the vacuum level during the interaction with surface lattice anion sites.

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Vascular endothelial cells form a single layer of flat cells that line the inner surface of blood vessels, extending from large vessels to the microvasculature of various organs. These cells are crucial metabolic and endocrine components of the body, playing vital roles in maintaining circulatory stability, regulating vascular tone, and preventing coagulation and thrombosis. Endothelial cell injury is regarded as a pivotal initiating factor in the pathogenesis of various diseases, triggered by multiple factors, including infection, inflammation, and hemodynamic changes, which significantly compromise vascular integrity and function.

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A series of N-Het·BH and AAE·BH complexes were prepared in moderate to high yields and the single-crystal structures of products 3, 31, 34, and 59 were determined. The N-Het·BH and AAE·BH complexes possess high stability, endowing these products with potential applications in luminescent and boron-containing drugs. The optical properties of the representative products have been preliminarily studied.

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Improved methods for the synthesis of BH and a series of -heterocycle-coordinated BH complexes (-Het·BH) have been developed with readily obtained KBH as the starting material. Oxidation of KBH could provide BH in over 90% yield. Then, the -Het·BH complexes were prepared from the as-synthesized BH through in situ multistep reactions by reacting with NaH, -heterocycles, and dilute hydrochloric acid.

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Designing mechanically robust, 2D membranes with elastic properties is crucial for advancing separation technologies, particularly in demanding environments such as saline lakes. Here, an innovative approach, the synthesis of silver nanosheets within graphene oxide (GO) membranes to form a 2D silver-graphene heterojunction, is introduced. This membrane exhibits exceptional mechanical strength (stress tolerance of 4.

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With the growing demand for clean energy, efficient uranium extraction technologies are needed, especially from seawater, where uranium reserves are huge. Here, we developed a composite membrane by inserting engineered with super uranyl-binding protein (SUP) within a two-dimensional (2D) MXene (TiCT) layer. SUP endowed the bioinorganic hybrid membrane with ultrahigh selectivity for uranyl ions, while the engineered improved the mechanical strength and economy of the membranes.

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A facile method for the synthesis of aminodiborane (NHBH, ADB) has been developed through the reaction of ammonia borane (NHBH, AB) with an ether solution of hydrogen chloride (HCl·EtO) at room temperature. In addition, -alkyl substituted ADB derivatives were synthesized by reacting -alkyl substituted AB with HCl·EtO at 50 °C. The mechanistic studies indicated that the nucleophilic substitution reaction of the B-H bonding pair electrons and the dihydrogen bonding interaction play an important role.

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Porcine epidemic diarrhea virus (PEDV) infection causes severe diarrhea and high mortality in neonatal piglets. Pseudorabies causes acute and often fatal infections in young piglets, respiratory disorders in growing pigs, and reproductive failure in sows. In late 2011, pseudorabies virus (PRV) variants occurred in Bartha-K61-vaccine-immunized swine herds, resulting in economic losses to the global pig industry.

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Porcine reproductive and respiratory syndrome caused by porcine reproductive and respiratory syndrome virus (PRRSV) is one of the most economically devastating viral diseases in the global pork industry. To further clarify the epidemic characteristics of the virus, 365 clinical samples were collected from diseased pigs suffering from abortion and respiratory disease from 2018 to 2023 on 63 pig farms in Henan and Shanxi provinces, and screened for the presence of PRRSV using reverse transcription-polymerase chain reaction (RT-PCR). A total of 62 clinical samples (62/365, 16.

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Article Synopsis
  • * An analysis of 126 cases showed no significant differences in most surgical outcomes between the two methods, but TVT-A had less postoperative groin pain.
  • * The findings suggest that while both TVT-A and TVT-O are effective for SUI, TVT-A is preferable as it is more minimally invasive and has fewer complications.
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The extraction of lithium (Li) from complex brines presents significant challenges due to the interference of competing ions, particularly magnesium (Mg⁺), which complicates the selective separation process. Herein, a strategy is introduced employing charge-lock enhanced 2D heterogeneous channels for the rapid and selective uptake of Li⁺. This approach integrates porous ZnFeO/ZnO nanosheets into Ag-modulated sub-nanometer interlayer channels, forming channels optimized for Li⁺ extraction.

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There exists an interplay between borane and a Lewis base in their adducts. However, studies on these adducts so far have mainly focused on the different reactions of B-H bonds with limited attention given to the influence of borane on the chemistry of the Lewis base, except for BF and BAr. Herein, we have synthesized novel borane adducts with pyridine derivatives, Py·BH, in which the coordination of BH efficiently achieved the intra-molecular charge transfer.

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Efficient separation of uranium from seawater stands as a pivotal challenge. This study unveils an approach focusing on the ingenious design of biomimetic two-dimensional (2D) membranes tailored explicitly for this purpose. Leveraging the unique interplay of DNA strands housing U aptamers, pH-responsive i-motifs, and poly A segments ingeniously embedded within graphene oxide membranes, a distinctive biomimetic 2D channel is engineered.

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The special properties of rare earth elements (REE) have effectively broadened their application fields. How to accurately recognize and efficiently separate target rare earth ions with similar radii and chemical properties remains a formidable challenge. Here, precise two-dimensional (2D) heterogeneous channels are constructed using engineered E.

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Article Synopsis
  • BCN-heterocyclic B-N chain compounds were synthesized by reacting ethane and propane 1,2-diamineborane with sodium and potassium salts.* -
  • Neutral B-N chain compounds were created through dehydrogenation reactions, and additional compounds were synthesized using pyridine derivatives instead of NH.* -
  • The study involved the characterization of these compounds and their reactions with cationic B-N chains, revealing complexities in solubility and reaction mechanisms.*
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Porcine circoviruses (PCVs) are a significant cause of concern for swine health, with four genotypes currently recognized. Two of these, PCV3 and PCV4, have been detected in pigs across all age groups, in both healthy and diseased animals. These viruses have been associated with various clinical manifestations, including porcine dermatitis and nephropathy syndrome (PDNS) and respiratory and enteric signs.

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Selective ion separation from brines is pivotal for attaining high-purity lithium, a critical nonrenewable resource. Conventional methods encounter substantial challenges, driving the quest for streamlined, efficient, and swift approaches. Here, we present a graphene oxide (GO)-based ternary heterostructure membrane with a unique design.

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An efficient method for the synthesis of MBH (M = Na and K) has been developed. The two possible formation mechanisms of the BH anion are proposed, in which the NHBH anion acts as a proton abstractor and a hydride donor. Furthermore, the BH and BH intermediates were detected.

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The wrinkles on graphene oxide (GO) membranes have unique properties; however, they interfere with the mass transfer of interlayer channels, posing a major challenge in the development of wrinkle-free GO membranes with smooth channels. In this study, the wrinkles on GO were flattened using vortex shear to tightly stack them into ultraflat GO membranes with Newton's ring interference pattern, causing hydrolysis of the lipid bonds in the wrinkles and an increase in the number of oxygen-containing groups. With increasing flatness, the interlayer spacing of the GO membranes decreased, improving the stability of the interlayer structure, the flow resistance of water through the ultraflat interlayer decreased, and the water flux increased 3-fold.

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Porcine circovirus 4 (PCV4) is a recently discovered circovirus that was first reported in 2019 in several pigs with severe clinical disease in Hunan province of China, and also identified in pigs infected with porcine reproductive and respiratory syndrome virus (PRRSV). To further investigate the epidemic profile and genetic characteristics of the two viruses, 150 clinical samples were collected from 9 swine farms in Shaanxi and Henan provinces of China, and a SYBR Green I-based duplex quantitative real-time polymerase chain reaction (qPCR) was developed for detecting PCV4 and PRRSV simultaneously. The results showed the limits of detection were 41.

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Background: Osteoarticular tuberculosis is one of the extrapulmonary tuberculosis (EPTB) diseases, which is mainly caused by infection of Mycobacterium tuberculosis (MTB) in bone and joints. The limitation of current clinical test methods is leading to a high misdiagnosis rate and affecting the treatment and prognosis. This study aims to search serum biomarkers that can assist in the diagnosis of osteoarticular tuberculosis.

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Immune response is an important factor in determining the fate of bone replacement materials, in which macrophages play an important role. It is a new idea to design biomaterials with immunomodulatory function to reduce inflammation and promote bone integration by regulating macrophages polarization. In this work, the immunomodulatory properties of CaP Zn-Mn-Li alloys and the specific mechanism of action were investigated.

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A meta-analysis investigation was executed to measure the wound healing rates (WHRs) and wound problems (WPs) of conventional circumcision (CC) compared with ring circumcision (RC). A comprehensive literature investigation till March 2023 was applied and 2347 interrelated investigations were reviewed. The 16 chosen investigations enclosed 25 838 individuals, with circumcision, were in the chosen investigations' starting point, 3252 of them were RC, and 2586 were CC.

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Recent research has attracted considerable attention toward N-heterocyclic carbene-coordinated boranes (NHC-borane) and their B-substituted derivatives because of their unique characteristics. In the present work, we focused on the syntheses, structures, and reactivities of such types of amine complexes, [NHC·BHNH]X ((NHC = IPr (1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene) and IMe (1,3-dimethylimidazol-2-ylidene); X = Cl, I, OTf). We have developed a synthetic method to access NHC·BHNH through the reaction of NaH with [IPr·BHNH]I, which was synthesized by the reaction of IPr·BHI with NH.

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