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| 1 | Recent progress on discovery of novel phosphors for solid state lighting显示文摘Luminescent materials play indispensable roles in many application areas such as lighting,advanced displays,bio-imaging,medical treatments,sensing and detection.Pursuing new luminescent materials with improved or desired properties is an endless mission,driven by increasing demands of advances in technologies and applications.The traditional trial-and-error method,usually based on intensive experiments,cannot search for new materials in a fast and efficient way,therefore alternative model-or theory-based approaches for materials discovery need to be developed.In this work we overviewed several promising methods for screening and discovering novel luminescent materials,including solid state combinatorial chemistry,chemical unit substitution,single particle diagnosis and high-throughput calculations.These methods,having their own merits and demerits,enable to search for new phosphor materials with interesting properties for white light-emitting diodes(wLEDs)rapidly and efficiently.Finally,data-driven discovery of materials is emphasized as a state-of-art approach. | Xuefang Luo Rong-Jun Xie | 2020 | Journal of Rare Earths2020,38,5: | 4 |
| 2 | A Review of the Nutritional Health Effects of Roselle (Hibiscus sabdariffa L.) Calyces显示文摘Roselle ( Hibiscus Sabdariffa L.) is a tropical and subtropical plant.This paper reviewed the distribution of roselle in China,and the varieties of roselle grown in China.The main chemical components of roselle calyces were listed,and the nutritional health effects and the latest development and utilization of roselle calyx were summarized,in order to provide a reference for better promotion and cultivation of roselle. | Xuefang XIE Zhao LIU Xiaodong XIE Yongfa ZHANG | 2019 | Agricultural Biotechnology2019,8,5: | 1 |
| 3 | Tuning Interface Bridging Between MoSe2 and Three‑Dimensional Carbon Framework by Incorporation of MoC Intermediate to Boost Lithium Storage Capability显示文摘Interface engineering has been widely explored to improve the electrochemical performances of composite electrodes,which governs the interface charge transfer,electron transportation,and structural stability.Herein,MoC is incorporated into MoSe2/C composite as an intermediate phase to alter the bridging between MoSe2-and nitrogen-doped three-dimensional(3D)carbon framework as MoSe2/MoC/N–C connection,which greatly improve the structural stability,electronic conductivity,and interfacial charge transfer.Moreover,the incorporation of MoC into the composites inhibits the overgrowth of MoSe2 nanosheets on the 3D carbon framework,producing much smaller MoSe2 nanodots.The obtained MoSe2 nanodots with fewer layers,rich edge sites,and heteroatom doping ensure the good kinetics to promote pseudo-capacitance contributions.Employing as anode material for lithium-ion batteries,it shows ultralong cycle life(with 90%capacity retention after 5000 cycles at 2 A g−1)and excellent rate capability.Moreover,the constructed LiFePO4//MoSe2/MoC/N–C full cell exhibits over 86%capacity retention at 2 A g−1 after 300 cycles.The results demonstrate the effectiveness of the interface engineering by incorporation of MoC as interface bridging intermediate to boost the lithium storage capability,which can be extended as a potential general strategy for the interface engineering of composite materials. | Jing Chen Yilin Luo Wenchao Zhang Yu Qiao Xinxin Cao Xuefang Xie Haoshen Zhou Anqiang Pan Shuquan Liang | 2020 | Nano-Micro Letters2020,12,12: | 1 |
| 4 | Reconstructing interfacial manganese deposition for durable aqueous zinc-manganese batteries显示文摘Low-cost,high-satety,and broad-prospect aqueous zinc-manganese batteries(ZMBs)are limited by complex interracial reactions.The solid-liquid interfacial state of the cathode dominates the Mn dissolution/deposition process of aqueous ZMBs,especially the important influence on the mass and charge transfer behavior of Zn2+and Mn2+.We proposed a quasi-eutectic electrolyte(QEE)that would stabilize the reversible behavior of interracial deposition and favorable interracial reaction kinetic of manganese-based cathodes in a long cycle process by optimizing mass and charge transfer.We emphasize that the initial interfacial reaction energy barrier is not the main factor affecting cycling performance,and the good reaction kinetics induced by interfacial deposition during the cycling process is more conducive to the stable cycling of the battery,which has been confirmed by theoretical analysis,quartz crystal microbalance with dissipation monitoring,depth etching X-ray photon-electron spectroscopy,etc.As a result,the QEE electrolyte maintained a stable specific capacity of 250 mAh g-1 at 0.5 A g-1 after 350 cycles in zinc-manganese batteries.The energy density retention rate of the ZMB with QEE increased by 174%compared to that of conventional aqueous electrolyte.Furthermore,the multi-stacked soft-pack battery with a cathodic mass load of 54.4 mg maintained a stable specific capacity of 200 mAh g-1 for 100 cycles,demonstrating its commercial potential.This work proves the feasibility of adapting lean-water QEE to the stable aqueous ZMBs. | Yida Hu Zhexuan Liu Lanyan Li Shan Guo Xuefang Xie Zhigao Luo Guozhao Fang Shuquan Liang | 2023 | National Science Review2023,10,10: | 0 |
| 5 | Ganoderma lucidum polysaccharide inhibits LPS-induced inflammatory injury to mammary epithelial cells显示文摘This study sought to investigate whether Ganoderma lucidum polysaccharide(GLP)has a protective effect on lipopolysaccharide(LPS)-induced inflammatory injury to mammary epithelial HC-11 cells and to characterize the mechanism involved.Cell viability was assessed using the cell counting kit 8(CCK-8)method,tumor necrosis factor-α(TNF-α),interleukin-6(IL-6)and IL-1βlevels were measured by enzyme linked immunosorbent assay(ELISA),and IκBa,p65 NF-κB and STAT3 mRNA were determined using quantitative reverse transcription PCR(qRT-PCR),p65 and STAT3 protein expression were determined using Western blotting,respectively.GLP was shown to inhibit LPS-induced TNF-α,IL-6,and IL-1βproduction(P<0.01 or P<0.05),GLP was also shown to increase IκBαmRNA expression(P<0.01),decrease p65 and STAT3 mRNA expression(P<0.01 or P<0.05),and decrease p-p65,p65,p-STAT3,and STAT3 protein expression in breast epithelial cells(P<0.01 or P<0.05).The findings suggest that GLP inhibits nuclear factor kappa-B(NF-κB)and signal transducers and activators of transcription(STAT)signaling by preventing IκBαdegradation and p65 and STAT3 phosphorylation.This results in lower LPS-induced TNF-α,IL-6,and IL-1βproduction and prevents inflammatory cell injury. | Yi Fan Wei Wang Xuefang Wang Liqin Yu Yue Wei Lei Wei Xiaoyang Xie Xiao Li | 2023 | Journal of Future Foods2023,3,1: | 0 |
| 6 | Perspectives in Electrochemical in situ Structural Reconstruction of Cathode Materials for Multivalent-ion Storage显示文摘Multivalent-ion(such as Zn^(2+),Mg^(2+),Al^(3+))batteries are considered as a prospective alternative for large-scale energy storage.However,the main problem of cathode materials for multivalent-ion batteries is the sluggish diffusion of multivalent ions.Many cathode materials will self-adjust under electrochemical conditions to achieve the optimal state for multivalent-ion storage.In this review,the significant role of electrochemical in situ structural reconstruction of cathode materials is suggested.The types,basic characteristics,and formation mechanisms of reconstructed phases have been systematically discussed and commented.The most important insight we pointed out is that the cathode materials with loose structures after in situ electrochemical activation are conducive to the reversible diffusion of multivalent ions.Moreover,several crucial issues of electrochemical activation and reconstruction were further analyzed and discussed.The challenges and future perspectives are presented in the final section. | Jing Huang Xuefang Xie Kun Liu Shuquan Liang Guozhao Fang | 2023 | Energy & Environmental Materials2023,6,1: | 0 |