首站-论文投稿智能助手
典型文献
Seedless synthesis of gold nanorods with tunable plasmonic peaks beyond 1300 nm
文献摘要:
Gold nanorods(AuNRs),as relatively common materials used in biomedical areas,have been synthesized by means of many methods.However,the conventional seed-mediated method is limited by complex operations and low yield.Besides,for further applications of AuNRs,well monodispersed AuNRs and tun-able longitudinal surface plasmon resonance(LSPR)remain to be improved.Herein,we report a one-pot method for synthesizing AuNRs without seeding agents.In this method,we use phenols as reducing agents and hydrochloric acid and nitric acid are used to regulate the pH of the growth solution.AuNRs with the longest LSPR peak position reaching 1340 nm are prepared.Furthermore,by systematically op-timizing concentrations of the reagents involved in the growth solution,different aspect ratios of AuNRs are synthesized.The facile synthesis,controllability aspect ratio,and long LSPR peak make our method promising for wider applications of AuNRs.
文献关键词:
作者姓名:
Liangxi Zhu;Zhuoxuan Lu;Liming Zhang;Nongyue He
作者机构:
State Key Laboratory of Bioelectronics,School of Biological Science and Medical Engineering,Southeast University,Nanjing 210096,China;Key Laboratory of Tropical Disease and Translational Medicine of the Ministry of Education&Hainan Provincial Key Laboratory of Tropical Medicine,Hainan Medical College,Haikou 571101,China;Hunan Key Laboratory of Biomedical Nanomaterials and Devices,Hunan University of Technology,Zhuzhou 412007,China
引用格式:
[1]Liangxi Zhu;Zhuoxuan Lu;Liming Zhang;Nongyue He-.Seedless synthesis of gold nanorods with tunable plasmonic peaks beyond 1300 nm)[J].中国化学快报(英文版),2022(05):2491-2495
A类:
Seedless
B类:
synthesis,gold,nanorods,tunable,plasmonic,peaks,beyond,Gold,AuNRs,relatively,common,materials,used,biomedical,areas,have,been,synthesized,by,means,many,methods,However,conventional,mediated,limited,complex,operations,low,yield,Besides,further,applications,well,monodispersed,longitudinal,surface,resonance,LSPR,remain,improved,Herein,report,one,pot,synthesizing,without,seeding,In,this,phenols,reducing,hydrochloric,acid,nitric,regulate,growth,solution,longest,position,reaching,prepared,Furthermore,systematically,timizing,concentrations,reagents,involved,different,aspect,ratios,facile,controllability,make,our,promising,wider
AB值:
0.568001
相似文献
Decorating rare-earth fluoride upconversion nanoparticles on AuNRs@Ag core-shell structure for NIR light-mediated photothermal therapy and bioimaging
Jingzhi Dou;Bei Chen;Guixia Liu;Xiangting Dong;Wensheng Yu;Jinxian Wang;Yunxiao Zhang;Zhanguo Li;Jiang Zhu-Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province,Changchun University of Science and Technology,Changchun 130022,China;Key Laboratory of Artificial Micro-and Nano-Structures of Ministry of Education,School of Physics and Technology,Wuhan University,Wuhan 430072,China;Tianjin Jinhang Technical Physics Institute,Tianjin 300070,China;School of Optoelectronic Engineering,Changchun University of Science and Technology,Changchun 130022,China;School of Foreign Languages,Changchun University of Science and Technology,Changchun 130022,China
Cr3+/Y3+co-doped persistent luminescence nanoparticles with biological window activation for in vivo repeatable imaging
Huimin Jiang;Lin Liu;Kexin Yu;Xianggui Yin;Shenghui Zheng;Liang Song;Junpeng Shi;Yun Zhang-College of Chemistry and Materials Science,Fujian Normal University,Fuzhou 350007,China;Key Laboratory of Design and Assembly of Functional Nanostructures,Fujian Institute of Research on the Structure of Matter,Chinese Academy of Sciences,Fuzhou 350002,China;Xiamen Key Laboratory of Rare Earth Photoelectric Functional Materials,Xiamen Institute of Rare Earth Materials,Haixi Institute,Chinese Academy of Sciences,Xiamen 361021,China;Institute of Urban Environment,Chinese Academy of Sciences,Xiamen 361021,China;Ganjiang Innovation Academy,Chinese Academy of Sciences,Ganzhou 341000,China
Synthesis ofNaYF4∶20%Yb3+,2%Er3+,2%Ce3+@NaYF4 nanorods and their size dependent uptake efficiency under flow condition
Dongmei Qiu;Jie Hu;Peiyuan Wang;Decai Huang;Yaling Lin;Haina Tian;Xiaodong Yi;Qilin Zou;Haomiao Zhu-Fujian Normal University,Fuzhou 350007,China;CAS Key Laboratory of Design and Assembly of Functional Nanostructures,and Fujian Key Laboratory of Nanomaterials,Fujian Institute of Research on the Structure of Matter,Chinese Academy of Sciences,Fuzhou 350002,China;Xiamen Key Laboratory of Rare Earth Photoelectric Functional Materials,Xiamen Institute of Rare Earth Materials,Haixi Institutes,Chinese Academy of Sciences,Xiamen 361021,China;College of Materials Science and Engineering,Huaqiao University,Xiamen 361021,China;Research Center of Biomedical Engineering of Xiamen&Key Laboratory of Biomedical Engineering of Fujian Province&Fujian Provincial Key Laboratory for Soft Functional Materials Research,Department of Biomaterials,College of Materials,Xiamen University,Xiamen 361005,China;Centre D'Elaboration de Matériaux et D'Etudes Structurales(CEMES),CNRS,Université de Toulouse-UPS,29 Rue Jeanne Marvig,BP 94347,31055,Toulouse,Cedex 4,France
Fluorescent immunosensor based on fluorescence resonance energy transfer between CdSe/ZnS quantum dots and Au nanorods for PRRSV detection
Xue Li;Jinhua Li;Wentao Yang;Dandan Han;Na Yao;Hongbin Zhao;Xueying Chu;Xuemei Liang;Chunguang Bi;Chunfeng Wang;Guilian Yang-College of Information Technology,Jilin Agricultural University,Changchun,130118,China;Nanophotonics and Biophotonics Key Laboratory of Jilin Province,Changchun University of Science and Technology,Changchun,130022,China;Jilin Provincial Engineering Research Center of Animal Probiotics,Jilin Provincial Key Laboratory of Animal Microecology and Healthy Breeding,Jilin Agricultural University,Changchun,130118,China;Changchun Huili Biotech Co.,Ltd.,Changchun,130102,China;Engineering Research Center of the Chinese Ministry of Education for Bioreactor and Pharmaceutical Development,College of Life Sciences,Jilin Agricultural University,Changchun,130118,China;State Key Laboratory of Advanced Materials for Smart Sensing,General Research Institute for Nonferrous Metals,Beijing,100088,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。