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2篇 您的检索式:作者名="Qixi MI"
    题名 作者 年代 出处 被引量
1Immobilization of functional nano-objects in living engineered bacterial biofilms for catalytic applications显示文摘Nanoscale objects feature very large surface-area-to-volume ratios and are now understood as powerful tools for catalysis,but their nature as nanomaterials brings challenges including toxicity and nanomaterial pollution.Immobilization is considered a feasible strategy for addressing these limitations.Here,as a proof-of-concept for the immobilization of nanoscale catalysts in the extracellular matrix of bacterial biofilms,we genetically engineered amyloid monomers of the Escherichia coli curli nanofiber system that are secreted and can self-assemble and anchor nano-objects in a spatially precise manner.We demonstrated three scalable,tunable and reusable catalysis systems:biofilm-anchored gold nanoparticles to reduce nitro aromatic compounds such as the pollutant p-nitrophenol,biofilm-anchored hybrid Cd0.9Zn0.1S quantum dots and gold nanoparticles to degrade organic dyes and biofilm-anchored CdSeS@ZnS quantum dots in a semi-artificial photosynthesis system for hydrogen production.Our work demonstrates how the ability of biofilms to grow in scalable and complex spatial arrangements can be exploited for catalytic applications and clearly illustrates the design utility of segregating high-energy nano-objects from injury-prone cellular components by engineering anchoring points in an extracellular matrix.Xinyu Wang Jiahua Pu Yi Liu Fang Ba Mengkui Cui Ke Li Yu Xie Yan Nie Qixi Mi Tao Li Lingli Liu Manzhou Zhu Chao Zhong 2019National Science Review2019,6,5:9
2Hole-transporting layer-free inverted planar mixed lead-tin perovskite-based solar cells显示文摘在场的混合铅听(Pb-Sn ) perovskites 扩大基于 perovskite 的太阳能电池(PSC ) 的轻收获的范围的有希望的策略。搬运电子的层或搬运洞的层(HTL ) 的使用是批评的完成高设备效率。然而,这策略象为某些氧化物的高温度的退火一样要求乏味的 layer-by-layer 制造。在这个工作,我们制作了 HTL 免费的平面 FAPb 0.5 Sn 0.5 我有 7.94% 的最高的效率的 3 PSC。23.13 妈 / 厘米 2 的高电线走火水流密度被达到,显示在 ITO/FAPb 0.5 Sn 0.53 接口。这发现提供其他的策略简化制造单个连接或双人脚踏车 PSC。Yuqin LIAO Xianyuan JIANG Wenjia ZHOU Zhifang SHI Binghan LI Qixi MI Zhijun NING 2017Frontiers of Optoelectronics2017,10,2:0
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