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6篇 您的检索式:作者名="Mo Liling"
    题名 作者 年代 出处 被引量
1Effect of Intravital Staining on Leaf Surface Coloring and Plant Carbon and Nitrogen Nutrition in Chlorophytum comosum var. variegatum显示文摘Using potted seedlings of Chlorophytum comosum var. variegatum as the experimental materials,the effect of 2. 0 mmol/L methyl orange( Treatment T_1),1. 0 mmol/L methyl violet( Treatment T_2) and 1. 0 mmol/L neutral red( Treatment T_3) on the biomass,root-shoot ratio,leaf color indices,plant carbon and nitrogen nutrition were studied. The results showed that the biomass of Treatment T_3 was significantly greater than that of treatments T_1 and CK. The root-shoot ratio decreased significantly in treatments T_1,T_2 and T_3,and the decrease in T_3 was most obvious. In all the three treatments with coloring agent,a*,b*and L*values were increased gradually,C value were decreased,H_0 and CIRG were increased,and the leaves were pink. In addition,the contents of chlorophyll a,chlorophyll b,chlorophyll a + b and carotenoid were significantly decreased. The contents of soluble sugar and starch were also decreased,and the decrease in Treatment T_2 was most significant. The contents of soluble protein and total nitrogen were increased,and the increase was most dramatic in Treatment T_3. The carbon to nitrogen ratio was decreased. The results proved that staining can improve the ornamental value of indoor plants,despite its effects on plant carbon and nitrogen nutrition of C. comosum var. variegatum,dyeing.Liling MO Song JIN Zebin CHEN 2018Agricultural Biotechnology2018,7,1:1
2miR?204-5p promotes the adipogenic differentiation of human adipose-derivedmesenchymal stem cells by modulating DVL3 expression and suppressing Wnt/β-cateninsignaling显示文摘Honghui He Ke Chen Fang Wang Liling Zhao Xinxing Wan Linghao Wang Zhaohui Mo 2015International Journal of Molecular Medicine2015,,6:1
3Revealing the nucleation event of Mg-Al alloy induced by Fe impurity显示文摘This study revealed the nucleation event and grain refinement mechanism of Mg-Al alloy induced by Fe impurity.The following orientation relationship was observed between Al-Fe particle andα-Mg matrix in the Mg-3Al alloy containing Fe impurity using a focused ion beam aided transmission electron microscope technique:(1^(-)011)[011^(-)1]_(Mg)//(011^(-))[011]_(Al_(2)Fe).Mg-3Al alloy was inoculated by adding 0.02wt%Fe to verify the nucleating potency of the Al_(2)Fe phase forα-Mg grain.The results indicated that Mg-3Al alloy was effectively refined with an average grain size declining from 1135 to 540μm.Among the potential Al-Fe phases of Mg-3Al-0.02Fe alloy,only the precipitation of the Al_(2)Fe phase occurs earlier than that ofα-Mg grain,and the Al_(2)Fe phase is stable in the nucleation stage ofα-Mg grain.Therefore,the Al_(2)Fe particle is the only available nucleating site for Mg-Al alloy with Fe impurity.The heterogeneous nucleation event ofα-Mg grain on the Al_(2)Fe particle is responsible for the grain refinement of Mg-3Al alloy inoculated by Fe.Hengbin Liao Liling Mo Xiong Zhou Zhizhong Yuan Jun Du 2022International Journal of Minerals,Metallurgy and Materials2022,29,7:1
4Development prospects of metal-based two-dimensional nanomaterials in lithium-sulfur batteries显示文摘A lithium-sulfur(Li-S)system is an important candidate for future lithium-ion system due to its low cost and high specific theoretical capacity(1675 m Ah/g,2600 Wh/kg),which is greatly hindered by the poor conductivity of sulfur,large volume change and dissolution of lithium polysulfides.Two-dimensional(2D)materials with monolayers or few-layers usually have peculiar structures and physical/chemical properties,which can resolve the critical issues in Li-S batteries.Especially,the metal-based 2D nanomaterials,including ferrum,cobalt or other metal-based composites with various anions,can provide high conductivity,large surface area and abundant reaction sites for restraining the diffusion for lithium polysulfides.In this mini-review,we will present an overview of recent developments on metal-based 2D nanomaterials with various anions as the electrode materials for Li-S batteries.Since the main bottleneck for the Li-S system is the shuttle of polysulfides,emphasis is placed on the structure and components,physical/chemical interaction and interaction mechanisms of the 2D materials.Finally,the challenges and prospects of metal-based 2D nanomaterials for Li-S batteries are discussed and proposed.Yuxue Mo Liling Liao Dongyang Li Rongwu Pan Yanhong Deng Yanliang Tan Haiqing Zhou 2023Chinese Chemical Letters2023,34,1:1
5Effect of Ferrum and Molybdenum Nutrition on Root Nodule and Physiological Growth of Vicia villosa Roth in Seedling Stage显示文摘[Objective] The paper was to explore the effects of ferrum and molybdenum nutrition on root nodule and physiological growth of Vicia villosa in seedling stage. [Method] A local cultivar of Qujing city,Vicia villosa,was studied using soilless cultivation method,and the effects of ferrum,molybdenum nutrition on root nodule and physiological growth of V. villosa in seedling stage were explored by adding 0. 01 mmol/L sodium molybdate and 0. 2 mmol/L ferrous sulfate respectively or simultaneously in the Hoagland's nutrient solution with the removal of ferrum and molybdenum salt. [Result]Ferrum and molybdenum significantly increased the number and weight of root nodule; the effect of single molybdenum treatment was the best,and the number and weight of root nodule in single molybdenum treatment were nearly 100% and 150% higher than that of the control. After treated by ferrum and molybdenum nutrition,the stem length and biomass of V. villosa decreased at varying levels,while root length and root shoot ratio increased significantly; the decrease extent of stem length in ferrum treatment and composite treatment was greater than that in molybdenum treatment,and the increase extent of root length in molybdenum treatment was the greatest. Application of ferrum and molybdenum fertilizer significantly improved ferrum and molybdenum content of V. villosa plants,and their soluble protein and free amino acid content increased at varying levels; single application of ferrum led to the greatest increase,while phosphorus content decreased at varying levels.The soluble sugar content of V. villosa decreased significantly at 90 d post ferrum and molybdenum application; application of molybdenum fertilizer reduced the starch content while ferrum fertilizer increased the starch content of V. villosa. Moreover,application of ferrum and molybdenum fertilizer reduced the SOD activity and enhanced the POD activity of V. villosa. [Conclusion] The application of ferrum and molybdenum fertilizer promotes the growth of root nodule and V. villosa plant.Mo Liling Jin Song Chen Zebin 2017Plant Diseases and Pests2017,8,6:0
6Effect of solute atom adsorption on heterogeneous nucleation by in-situ MgO particles:Experimental and theoretical studies显示文摘The introduction of oxide inclusions during the smelting process has a clear promising heterogeneous nucleation potency on Mg-based alloys, but the mechanism has not been explored clearly yet. In the present work, the grain refinement mechanism of MgO in pure Mg,Mg-3Al and AZ31(Mg-2.9Al-0.9Zn-0.3Mn) alloys is investigated by combing first-principles calculations and experiments. The theoretical results show that solute atoms adsorption will affect the nucleation and the subsequent growth process, which is an important factor affecting the refinement efficiency. A contradiction between the experimental results and the grain growth restriction factor(GRF) theory is observed,that is the refinement ratio of AZ31 is worse than Mg-3Al alloy. This is explained by an adsorption model which reveals that Al promotes the adsorption of Mg on MgO surface so as to stimulate more particles available as nucleating sites. Meanwhile, Fe and Mn also have favorable effects on the adsorption of Mg, Zn may play the opposite role compared to Al. The theoretical analyzes provide a strong support to the experiments that Al benefits the initial nucleation of α-Mg on MgO to promote the grain refining effect of Mg-3Al prior to AZ31 alloy.Liling Mo Hengbin Liao Xiong Zhou Yu-Jun Zhao Jun Du 2023Journal of Magnesium and Alloys2023,11,10:0
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