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水溶液中尺寸可调的银纳米立方体的种子介导生长及其向具有高效光热性能的金纳米笼的转化

Seed-Mediated Growth of Silver Nanocubes in Aqueous Solution with Tunable Size and Their Conversion to Au Nanocages with Efficient Photothermal Property.

作者信息

Lin Zhen-Wen, Tsao Yu-Chi, Yang Min-Yi, Huang Michael H

机构信息

Department of Chemistry, National Tsing Hua University, Hsinchu, 30013 (Taiwan.

出版信息

Chemistry. 2016 Feb 12;22(7):2326-32. doi: 10.1002/chem.201504303. Epub 2016 Jan 12.

Abstract

Two seed-mediated approaches for the growth of silver nanocubes in aqueous solution have been developed. Addition of a silver-seed solution to a mixture of cetyltrimethylammonium chloride (CTAC), silver trifluoroacetate, and ascorbic acid and heating the solution at 60 °C for 1.5 h produces uniform Ag nanocubes with tunable sizes from 23 to 60 nm by simply adjusting the volume of silver-seed solution introduced. Alternatively, the silver-seed solution can be injected into a mixture of cetyltrimethylammonium bromide (CTAB), silver nitrate, copper sulfate, and ascorbic acid and heated to 80 °C for 2 h to generate 46 nm silver nanocubes. Plate-like Ag nanocrystals exposing {111} surfaces can be synthesized by reducing Ag(NH3 )2 (+) with ascorbic acid in a CTAC solution. Relatively large Ag nanocubes were converted to cuboctahedral Au/Ag and Au nanocages and nanoframes with empty {111} faces through a galvanic replacement reaction. The nanocages showed a progressive plasmonic band red-shift with increasing Au content. The nanocages exhibited high and stable photothermal efficiency with solution temperatures quickly reaching beyond 100 °C when irradiated with an 808 nm laser for large heat and water vapor generation.

摘要

已经开发出两种在水溶液中生长银纳米立方体的种子介导方法。将银种子溶液加入到十六烷基三甲基氯化铵(CTAC)、三氟乙酸银和抗坏血酸的混合物中,并在60℃下加热溶液1.5小时,通过简单地调节引入的银种子溶液的体积,可以产生尺寸在23至60纳米之间可调的均匀银纳米立方体。或者,可以将银种子溶液注入到十六烷基三甲基溴化铵(CTAB)、硝酸银、硫酸铜和抗坏血酸的混合物中,并加热至80℃持续2小时,以生成46纳米的银纳米立方体。通过在CTAC溶液中用抗坏血酸还原Ag(NH3 )2 (+),可以合成暴露{111}面的片状银纳米晶体。通过电化学生成反应,相对较大的银纳米立方体被转化为具有空{111}面的八面体Au/Ag和金纳米笼及纳米框架。随着金含量的增加,纳米笼呈现出等离子体带的逐渐红移。当用808纳米激光照射以产生大量热量和水蒸气时,纳米笼表现出高且稳定的光热效率,溶液温度迅速超过100℃。

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