99超碰中文字幕在线观看-天天干天天日天天舔婷婷-我看操逼的好看的女人的-日本一二三四五区日韩精品

產(chǎn)品展廳收藏該商鋪

您好 登錄 注冊(cè)

當(dāng)前位置:
美國(guó)布魯克海文儀器公司>資料下載>Multifunctional Hybrid Fe2O3-Au Nanoparticles for Efficient Plasmonic Heating

資料下載

Multifunctional Hybrid Fe2O3-Au Nanoparticles for Efficient Plasmonic Heating

閱讀:335          發(fā)布時(shí)間:2016-7-20
提 供 商 美國(guó)布魯克海文儀器公司 資料大小 0K
資料圖片 下載次數(shù) 2次
資料類型 瀏覽次數(shù) 335次
免費(fèi)下載    

作者 Simona E. Hunyadi Murph1, George K. Larsen1, Robert J. Lascola2

 

1National Security Directorate, Savannah River National Laboratory,

2Analytical Development Directorate, Savannah River National Laboratory

 

 

摘要:One of the most widely used methods for manufacturing colloidal gold nanospherical particles involves the reduction of chloroauric acid (HAuCl4) to neutral gold Au(0) by reducing agents, such as sodium citrate or sodium borohydride. The extension of this method to decorate iron oxide or similar nanoparticles with gold nanoparticles to create multifunctional hybrid Fe2O3-Au nanoparticles is straightforward. This approach yields fairly good control over Au nanoparticle dimensions and loading onto Fe2O3. Additionally, the Au metal size, shape, and loading can easily be tuned by changing experimental parameters (e.g., reactant concentrations, reducing agents, surfactants, etc.). An advantage of this procedure is that the reaction can be done in air or water, and, in principle, is amenable to scaling up. The use of such optically tunable Fe2O3-Au nanoparticles for hyperthermia studies is an attractive option as it capitalizes on plasmonic heating of gold nanoparticles tuned to absorb light strongly in the VIS-NIR region. In addition to its plasmonic effects, nanoscale Au provides a unique surface for interesting chemistries and catalysis. The Fe2O3 material provides additional functionality due to its magnetic property. For example, an external magnetic field could be used to collect and recycle the hybrid Fe2O3-Au nanoparticles after a catalytic experiment, or alternatively, the magnetic Fe2O3 can be used for hyperthermia studies through magnetic heat induction. The photothermal experiment described in this report measures bulk temperature change and nanoparticle solution mass loss as functions of time using infrared thermocouples and a balance, respectively. The ease of sample preparation and the use of readily available equipment are distinct advantages of this technique. A caveat is that these photothermal measurements assess the bulk solution temperature and not the surface of the nanoparticle where the heat is transduced and the temperature is likely to be higher.

 

關(guān)鍵詞:Engineering, Issue 108, Gold, Iron oxide, Multifunctional, Plasmonics, Magnetic material, Photothermal

 

收藏該商鋪

請(qǐng) 登錄 后再收藏

提示

您的留言已提交成功!我們將在第一時(shí)間回復(fù)您~

對(duì)比框

產(chǎn)品對(duì)比 產(chǎn)品對(duì)比 聯(lián)系電話 二維碼 意見(jiàn)反饋 在線交流

掃一掃訪問(wèn)手機(jī)商鋪
010-62081908
在線留言
武冈市| 上饶县| 陇西县| 沭阳县| 栖霞市| 南靖县| 隆回县| 郎溪县| 黎川县| 青铜峡市| 雷州市| 成安县| 仙桃市| 白山市| 长岛县| 丰顺县| 佛坪县| 左云县| 庆元县| 安福县| 瑞丽市| 尼勒克县| 运城市| 山阴县| 满洲里市| 赤水市| 南阳市| 仁寿县| 高要市| 夏津县| 雅江县| 长沙县| 济宁市| 藁城市| 仙居县| 万山特区| 北票市| 岑巩县| 关岭| 仙游县| 昭觉县|