欧美日韩亚洲国产精品,91精品久久人人妻人人做人人爱,99精品国产综合久久精品自在,亚洲国产欧美目韩成人综合,site:jiangsuyinhang.com,亚洲最新无码AV在线,韩国激情无码av一区二区

歡迎光臨! �(dāng)前位置: 首頁 > 詳細(xì)�(nèi)�

金納米材料因其優(yōu)異的�(wěn)定性、小尺寸表面效應(yīng)、光�(xué)效應(yīng)以及�(dú)特的生物親和性在有機(jī)催化[1]、生物醫(yī)�[2]、生物成�[3,4]、食品檢�[5]、化妝品[6]以及光電材料[7,8]等領(lǐng)域中有著巨大的應(yīng)用價�。例�, Vahid Raeesi等人利用金納米棒�DNA通過自組裝的行為成功的構(gòu)建了具有藥物傳遞功能的超級結(jié)�(gòu)[2]�

    百靈威提供多種規(guī)格的納米�、納米籠、納米粒子等金納米材料助力您的科�(xué)研究�

  • 分散�、穩(wěn)定性好
  • 高比表面�,高�(fù)載量
  • 安全�(huán)保無污染




1:長徑比�3.6的金納米棒的電鏡�

2:長徑比�4.3的金納米棒的電鏡�

3:長徑比�5.4的金納米棒的電鏡�

4:長徑比�5.8的金納米棒的電鏡�

 

� 金納米棒

中文名稱

英文名稱

表面修飾

長徑�

�(guī)�

金納米棒

Gold nanorods

CTAB/ sodium citrate e/PEG-(COOH/NH2/OCH3)

2

0.1 mg/mL dispersion in water, diam.: 39 nm, length: 82.6 nm, λ: 610 nm

2.5

0.1 mg/mL dispersion in water, diam.: 20 nm, length: 50 nm, λ: 660 nm

2.9

0.1 mg/mL dispersion in water, diam.: 18.9 nm, length: 55 nm, λ: 700 nm

3.2

0.1 mg/mL dispersion in water, diam.: 24.6 nm, length: 79.1 nm, λ: 730 nm

 

金納米粒�

�(chǎn)品編�

中文名稱

表面修飾基團(tuán)

�(guī)�

976628

Gold nanoparticles sodium citrate-coated
金納米粒子檸檬酸鈉修�

sodium citrate

50 ug/mL dispersion in water, diam.: 20 nm, λ: 519 - 521 nm, O.D.: 1

943880

50 ug/mL dispersion in water, diam.: 40 nm, λ: 524 - 526 nm, O.D.: 1

966303

50 ug/mL dispersion in water, diam.: 60 nm, λ: 534 - 536 nm, O.D.: 1

968346

50 ug/mL dispersion in water, diam.: 80 nm, λ: 546 - 548 nm, O.D.: 1

910980

50 ug/mL dispersion in water, diam.: 100 nm, λ: 562 - 566 nm, O.D.: 1

更多金納米材�

金納米粒�

金納米棒

金納米籠

金納米線

� 通用�(chǎn)�

納米合成用表面活性劑及配�

百靈威石墨烯改變電子世界的新�

PEG化試�活性聚
乙二醇試�

百靈威新型納米微�小顆�,大比表面積

百靈威為多領(lǐng)域科�(xué)研究提供表面活性劑






Reference

[1] Bondarenko G N, Beletskaya I P. Activated carbon as an efficient support for gold nanoparticles that catalyze the hydrogenation of nitro compounds with molecular hydrogen[J]. Mendeleev Communications2015, 25(6):443-445.

[2] Raeesi V, Chou L Y T, Chan W C W. Tuning the Drug Loading and Release of DNAAssembled GoldNanorod Superstructures[J]. Advanced Materials2016. 28(38):8511-8518.

[3] Li M, Zhang Z S, Zhang X, et al. Optical properties of Au/Ag core/shell nanoshuttles.[J]. Optics Express2008, 16(18):14288-14293.

[4] Comenge J, Fragueiro O, Sharkey J, et al. Preventing Plasmon Coupling Between Gold Nanorods Improves the Sensitivity of Photoacoustic Detection of Labelled Stem Cells In Vivo.[J]. Acs Nano2016, 10(7), 7106–7116. 

[5] 王金�,楊毅�.納米金在食品污染物檢測中的研究�(jìn)�[J].中國食品�(wèi)生雜�2016, 28(4):546-549.

[6] Lee J B, Hwang D, Han D W, et al. Cosmetic composition e.g. milky lotion and pack used for preventing skin aging, comprises gold nanoparticles surface treated with mixed solution comprising organic acid chosen from gallic acid and protocatechuic acid, and isoflavone: WO. WO2012173312[P]. 2016.

[7] Tong P, Cui Y, Hao Y, et al. Improving Performance of Organic Solar Cells with PEG-coated Gold Nanorods Doped in the Active Layer[C]. Asia Communications and Photonics Conference2015.

[8] Wu R, Yang B, Zhang C, et al. Prominent Efficiency Enhancement in Perovskite Solar Cells Employing Silica-Coated Gold Nanorods[J]. Journal of Physical Chemistry C2016, 120(13): 6996-7004.

�1� 總共1�