Laser & Optoelectronics Progress, Volume. 57, Issue 13, 130002(2020)

Research Progress on Photoacoustic Conversion of Metal Nanomaterials

Chunqi Zheng, Jinsheng Lu, Jun Lü**, and Qiang Li*
Author Affiliations
  • State Key Laboratory of Modern Optical Instrumentation, College of Optical Science and Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, China
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    Figures & Tables(8)
    SEM and TEM images of various categories of gold nanocrystals. (a) Gold nanospheres[17]; (b) gold nanorods[18]; (c) gold nanocages[20]; (d) gold nanostars[23]; (e) gold nanodisks[25]; (f) gold nanoshells[27
    Diagram of gold nanocrystalline polymer assembly[40]
    SEM image, side view of structure, and photoacoustic signal of two-dimensional gold nanostructure. (a) SEM image of two-dimensional gold nanostructure; (b) side view of two-dimensional gold nanostructure; (c) acoustic signal from gold nanostructure and carbon black film versus incident wavelength[43]
    Fabrication procedures, SEM images, and photoacoustic signal comparisons of 3D Ag nanostructures. (a) Fabrication procedures for 3D silver nanostructure (upper) and their SEM images (lower); (b) photoacoustic signals from 3D Ag nanostructures, 2D Ag nanostructures, and polymer[44]
    Mechanism of matrix metalloproteinases (MMPs) activating CuS-peptide-BHQ3 (CPQ) contrast agent and changes of PA signals of BHQ3 and CuS. (a) Mechanism of MMPs activating CPQ contrast agent; (b) changes of PA signals of BHQ3 and CuS after adding MMPs[50]
    Broadband all-optical ultrasound transducers. (a) Side view of gold nanostructure; (b) side view of all-optical transducer; (c) SEM image of polymer with holes; (d) frequency response curve of ultrasound transducer[2]
    Schematic of phase cancellation of photoacoustic signal[52]
    • Table 1. Summary of fabrication methods, modulation methods, properties, and applications of different gold nanocrystals

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      Table 1. Summary of fabrication methods, modulation methods, properties, and applications of different gold nanocrystals

      Type of crystalFabrication methodModulation methodPropertyApplication
      Gold nanospheresElectrochemical process; electron beam lithography; seed-induced growth methodsAggregation of small nanoparticles;coating certain materialsSmall size; insensitive to polarizationBrain imaging of mice; photothermal therapy[16]
      Gold nanorodsSeed-induced growth methods; template synthesis method; photochemical methodChanging aspect ratioTend to accumulate in tumor; low photostabilityTumor imaging[18]; RNA detection[19]
      Gold nanocagesGalvanic displacement of Ag atomsChanging wall thickness, pore distribution on surface, and overall sizeBeneficial in molecular photoacoustic imagingPhotoacoustic imaging of lymph nodes[20] and ocular[33]; molecular photoacoustic imaging; cancer diagnosis and treatment
      Gold nanostarsOne-step synthesis method; seed-induced growth methodsChanging aspect ratio of branchesHighly efficient in photothermal conversionTissue photoacoustic imaging; magnetic resonance imaging[22]; photothermal therapy
      Gold nanodisksChemical synthesis method; physical lithographyChanging thickness and radiusInsensitive to polarizationIn vivo photoacoustic imaging[25]
      Gold nanoshellsSeed-induced growth methods; one-step synthesis methodChanging wall thickness and radiusAdditional features can be achieved by choosing dielectric core materialsCancer treatment; photothermal therapy[27]
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    Chunqi Zheng, Jinsheng Lu, Jun Lü, Qiang Li. Research Progress on Photoacoustic Conversion of Metal Nanomaterials[J]. Laser & Optoelectronics Progress, 2020, 57(13): 130002

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    Paper Information

    Category: Reviews

    Received: Sep. 25, 2019

    Accepted: Nov. 2, 2019

    Published Online: Jul. 9, 2020

    The Author Email: Jun Lü (phylujun@zju.edu.cn), Qiang Li (qiangli@zju.edu.cn)

    DOI:10.3788/LOP57.130002

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