期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Phase-modulated quantum-sized TMDs for extreme saturable absorption
1
作者 Zhexue Chen Xinyu Sui +3 位作者 zhangqiang li Yueqi li Xinfeng liu Yong Zhang 《Nano Research》 SCIE EI CSCD 2023年第4期5803-5808,共6页
Two-dimensional semiconductors such as transition metal dichalcogenides(TMDs)have attracted much interest in the past decade.Herein,we present an all-physical top-down method for the scalable production of the intrins... Two-dimensional semiconductors such as transition metal dichalcogenides(TMDs)have attracted much interest in the past decade.Herein,we present an all-physical top-down method for the scalable production of the intrinsic TMD quantum sheets(QSs).The phases of the TMDs(e.g.,2H-MoSe_(2),2H-WSe_(2),and Td-WTe2)remain stable during the transformation from bulk to QSs.However,phase transition(from Td to 2H)is detected in MoTe2.Such phase-modulation by size-reduction has never been reported before.The TMD QSs can be well dispersed in solvents,resulting in remarkable photoluminescence with excitation wavelength-,concentration-,and solvent-dependence.Meanwhile,the TMD QSs can be readily solution-processed into hybrid thin films,which demonstrate exceptional nonlinear saturation absorption(NSA).Notably,2H-MoTe2 QSs in poly(methyl methacrylate)show extremely high NSA performance with(absolute)modulation depth up to 46.6%and saturation intensity down to 0.81 MW·cm^(−2).Our work paves the way towards quantum-sized TMDs. 展开更多
关键词 transition metal dichalcogenides(TMDs) INTRINSIC quantum sheets PHOTOLUMINESCENCE nonlinear saturation absorption
原文传递
贵金属纳米材料的抑菌机制
2
作者 李张强 李娜 +1 位作者 李悦 汪美贞 《微生物学报》 CAS CSCD 北大核心 2021年第2期368-378,共11页
贵金属纳米材料(Noble metal-based nanomaterials, NMNs)具有广谱抗菌性。NMNs可通过纳米穿孔、破坏膜稳定性、诱导活性氧、与DNA等生物大分子结合等方式杀灭细菌。同时,在NMNs选择压力下,细菌进化出了抵抗NMNs损害的能力。细菌对NMNs... 贵金属纳米材料(Noble metal-based nanomaterials, NMNs)具有广谱抗菌性。NMNs可通过纳米穿孔、破坏膜稳定性、诱导活性氧、与DNA等生物大分子结合等方式杀灭细菌。同时,在NMNs选择压力下,细菌进化出了抵抗NMNs损害的能力。细菌对NMNs的耐性可通过膜电位排斥、分泌吸附蛋白、激活抗氧化损伤相关酶、外排有毒颗粒以及群体效应等途径得以表现。本文一方面总结了NMNs对细菌的抑制机制,另一方面探讨了细菌对NMNs产生耐性的方式、原因及目前研究的不足,以期为合理开发并应用抑菌贵金属纳米材料提供科学依据。 展开更多
关键词 贵金属纳米材料 抑菌机制 细菌耐性 膜电位排斥 吸附蛋白 群体感应
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部