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Electrochemical lithium storage performance of three-dimensional foam-like biocarbon/MoS2 composites 被引量:6
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作者 bei-bei ma Shui-jiao CHEN +4 位作者 Ye-wei HUANG Zhen-zhen NIE Xiao-bin QIU Xiu-qiang XIE Zhen-jun WU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第1期255-264,共10页
Molybdenum disulfide(MoS2)was loaded on biocarbon using waste camellia dregs(CDs)as the carbon source,which was further coated with dopamine hydrochloride to construct biocarbon/MoS2 electrode composites.The electroch... Molybdenum disulfide(MoS2)was loaded on biocarbon using waste camellia dregs(CDs)as the carbon source,which was further coated with dopamine hydrochloride to construct biocarbon/MoS2 electrode composites.The electrochemical lithium storage performance of the composites with different MoS2 contents was investigated.SEM results demonstrated that the composite had a three-dimensional foam-like structure with MoS2 as the interlayer.XRD and HRTEM tests revealed that MoS2 interlayer spacing in the composite was expanded.XPS analysis showed that new Mo—N bonds were formed in the active material.The electrochemical tests showed that the composite with a MoS2 content of 63%had a high initial specific capacity of 1434 mA·h/g at a current density of 100 mA/g.After a long cycle at a high current,it also showed good cycling stability and the capacity retention was nearly 100%.In addition,it had good lithium ion deintercalation ability in the electrochemical kinetics test. 展开更多
关键词 electrochemical lithium storage performance lithium-ion batteries camellia dregs MOS2 COMPOSITES pseudocapacity anode
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来那度胺治疗血管免疫母细胞性T细胞淋巴瘤3例 被引量:2
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作者 马贝贝 冷加燕 +5 位作者 马玉娟 杨磊 张永宁 季勇慧 钱震 钱军 《中国现代医学杂志》 CAS 2020年第9期122-123,共2页
1临床资料1.1病例1患者女性,66岁。2013年6月出现发热、皮疹,伴瘙痒。查体及淋巴结彩超:体温38.3℃,全身多处皮肤可见红色斑丘疹,压之不褪色,双侧颈部、腋窝、锁骨上、腹股沟、腹主动脉旁淋巴结肿大,最大直径约32 mm×17 mm,双侧扁... 1临床资料1.1病例1患者女性,66岁。2013年6月出现发热、皮疹,伴瘙痒。查体及淋巴结彩超:体温38.3℃,全身多处皮肤可见红色斑丘疹,压之不褪色,双侧颈部、腋窝、锁骨上、腹股沟、腹主动脉旁淋巴结肿大,最大直径约32 mm×17 mm,双侧扁桃体无肿大。 展开更多
关键词 淋巴瘤 T细胞 来那度胺 血管免疫母细胞淋巴结病
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Regulation of the intermittent release of giant unilamellar vesicles under osmotic pressure 被引量:2
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作者 Qi Zhou Ping Wang +2 位作者 bei-bei ma Zhong-Ying Jiang Tao Zhu 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第9期644-651,共8页
Osmotic pressure can break the fluid balance between intracellular and extracellular solutions.In hypo-osmotic so-lution,water molecules,which transfer into the cell and burst,are driven by the concentration differenc... Osmotic pressure can break the fluid balance between intracellular and extracellular solutions.In hypo-osmotic so-lution,water molecules,which transfer into the cell and burst,are driven by the concentration difference of solute across the semi-permeable membrane.The complicated dynamic processes of intermittent bursts have been previously observed.However,the underlying physical mechanism has yet to be thoroughly explored and analyzed.Here,the intermittent re-lease of inclusion in giant unilamellar vesicles was investigated quantitatively,applying the combination of experimental and theoretical methods in the hypo-osmotic medium.Experimentally,we adopted a highly sensitive electron multiplying charge-coupled device to acquire intermittent dynamic images.Notably,the component of the vesicle phospholipids af-fected the stretch velocity,and the prepared solution of vesicles adjusted the release time.Theoretically,we chose equations and numerical simulations to quantify the dynamic process in phases and explored the influences of physical parameters such as bilayer permeability and solution viscosity on the process.It was concluded that the time taken to achieve the balance of giant unilamellar vesicles was highly dependent on the molecular structure of the lipid.The pore lifetime was strongly related to the internal solution environment of giant unilamellar vesicles.The vesicles prepared in viscous solution were able to visualize long-lived pores.Furthermore,the line tension was measured quantitatively by the release velocity of inclusion,which was of the same order of magnitude as the theoretical simulation.In all,the experimental values well matched the theoretical values.Our investigation clarified the physical regulatory mechanism of intermittent pore forma-tion and inclusion release,which provides an important reference for the development of novel technologies such as gene therapy based on transmembrane transport as well as controlled drug delivery based on liposomes. 展开更多
关键词 osmotic pressure difference membrane tension PORE line tension
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