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基于还原氧化石墨烯包覆的金纳米棒的光声性能增强和光热稳定性提升用于灵敏光声成像。

Amplified photoacoustic performance and enhanced photothermal stability of reduced graphene oxide coated gold nanorods for sensitive photoacoustic imaging.

机构信息

‡KU-KIST Graduate School of Converging Science and Technology, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 136-701, South Korea.

⊥Department of Electronic Engineering, Chonbuk National University, 567 Baeckje-daero, Jeonju 561-756, South Korea.

出版信息

ACS Nano. 2015 Mar 24;9(3):2711-9. doi: 10.1021/nn506516p. Epub 2015 Mar 9.

Abstract

We report a strongly amplified photoacoustic (PA) performance of the new functional hybrid material composed of reduced graphene oxide and gold nanorods. Due to the excellent NIR light absorption properties of the reduced graphene oxide coated gold nanorods (r-GO-AuNRs) and highly efficient heat transfer process through the reduced graphene oxide layer, r-GO-AuNRs exhibit excellent photothermal stability and significantly higher photoacoustic amplitudes than those of bare-AuNRs, nonreduced graphene oxide coated AuNRs (GO-AuNRs), or silica-coated AuNR, as demonstrated in both in vitro and in vivo systems. The linear response of PA amplitude from reduced state controlled GO on AuNR indicates the critical role of GO for a strong photothermal effect of r-GO-AuNRs. Theoretical studies with finite-element-method lab-based simulation reveal that a 4 times higher magnitude of the enhanced electromagnetic field around r-GO-AuNRs can be generated compared with bare AuNRs or GO-AuNRs. Furthermore, the r-GO-AuNRs are expected to be a promising deep-tissue imaging probe because of extraordinarily high PA amplitudes in the 4-11 MHz operating frequency of an ultrasound transducer. Therefore, the r-GO-AuNRs can be a useful imaging probe for highly sensitive photoacoustic images and NIR sensitive therapeutics based on a strong photothermal effect.

摘要

我们报道了一种由还原氧化石墨烯和金纳米棒组成的新型功能杂化材料具有很强的光声(PA)性能。由于还原氧化石墨烯包覆的金纳米棒(r-GO-AuNRs)具有优异的近红外光吸收特性,以及通过还原氧化石墨烯层的高效热传递过程,r-GO-AuNRs 表现出优异的光热稳定性和比裸金纳米棒(bare-AuNRs)、非还原氧化石墨烯包覆的 AuNRs(GO-AuNRs)或二氧化硅包覆的 AuNRs 更高的光声幅度,这在体外和体内系统中都得到了证明。从 AuNR 上的还原态控制 GO 的 PA 幅度的线性响应表明 GO 对于 r-GO-AuNRs 的强光热效应起着关键作用。基于有限元法的实验室模拟理论研究表明,与裸 AuNR 或 GO-AuNR 相比,r-GO-AuNRs 周围可以产生 4 倍更高的增强电磁场强度。此外,由于在超声换能器的 4-11 MHz 工作频率下具有极高的光声幅度,r-GO-AuNRs 有望成为一种有前途的深层组织成像探针。因此,r-GO-AuNRs 可以作为一种有用的成像探针,用于基于强光热效应的高灵敏度光声成像和近红外敏感治疗。

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