Synchrotron infrared nano-spectroscopy and -imaging

被引:55
|
作者
Bechtel, Hans A. [1 ]
Johnson, Samuel C. [2 ]
Khatib, Omar [1 ,2 ]
Muller, Eric A. [2 ]
Raschke, Markus B. [2 ]
机构
[1] Adv Light Source Div, Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA
[2] Univ Colorado, Dept Phys,Dept Chem,JILA,CO 80309, Boulder, CO 80309 USA
关键词
Synchrotron; Infrared; Nanospectroscopy; Near-field; s-SNOM; FTIR; FIELD OPTICAL MICROSCOPY; PHONON-POLARITONS; VIBRATIONAL NANOSPECTROSCOPY; SPATIAL-RESOLUTION; ANALYTICAL-MODEL; SCATTERING; FTIR; RADIATION; NANOSCOPY; CONTRAST;
D O I
10.1016/j.surfrep.2020.100493
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Infrared (IR) spectroscopy has evolved into a powerful analytical technique to probe molecular and lattice vibrations, low-energy electronic excitations and correlations, and related collective surface plasmon, phonon, or other polaritonic resonances. In combination with scanning probe microscopy, near-field infrared nano-spectroscopy and -imaging techniques have recently emerged as a frontier in imaging science, enabling the study of complex heterogeneous materials with simultaneous nanoscale spatial resolution and chemical and quantum state spectroscopic specificity. Here, we describe synchrotron infrared nano-spectroscopy (SINS), which takes advantage of the low-noise, broadband, high spectral irradiance, and coherence of synchrotron infrared radiation for near-field infrared measurements across the mid- to far-infrared with nanometer spatial resolution. This powerful combination provides a qualitatively new form of broadband spatio-spectral analysis of nanoscale, mesoscale, and surface phenomena that were previously difficult to study with IR techniques, or even any form of micro-spectroscopy in general. We review the development of SINS, describe its technical implementations, and highlight selected examples representative of the rapidly growing range of applications in physics, chemistry, biology, materials science, geology, and atmospheric and space sciences. (C) 2020 Elsevier B.V. All rights reserved.
引用
收藏
页数:24
相关论文
共 50 条
  • [1] SYNCHROTRON INFRARED NANO-SPECTROSCOPY FOR NANO-SPECIATION OF METAL CORROSION PRODUCTS
    Puglieri, Thiago S.
    Freitas, Raul de O.
    Maia, Francisco C. B.
    de Faria, Dalva L. A.
    QUIMICA NOVA, 2019, 42 (09): : 1050 - 1055
  • [2] Performances for broadband synchrotron photothermal infrared nano-spectroscopy at Diamond Light Source
    Frogley, Mark D.
    Lekkas, Ioannis
    Kelley, Chris S.
    Cinque, Gianfelice
    INFRARED PHYSICS & TECHNOLOGY, 2020, 105 (105)
  • [3] Synchrotron Radiation Nano-Spectroscopy of Dielectrics for LSI and ReRAM
    Oshima, Masaharu
    Toyoda, Satoshi
    Horiba, Koji
    Yasuhara, Ryutaro
    Kumigashira, Hiroshi
    PHYSICS AND TECHNOLOGY OF HIGH-K MATERIALS 9, 2011, 41 (03): : 453 - 460
  • [4] Infrared nano-spectroscopy goes below the surface
    Sealy, Cordelia
    NANO TODAY, 2020, 35
  • [5] Determination of polypeptides conformation in water with infrared nano-spectroscopy
    Centrone, Andrea
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 258
  • [6] Fourier transform infrared nano-spectroscopy: Mechanism and applications
    Nan, Chen
    Yue, Wang
    Tao, Liu
    Yang, Xia
    APPLIED SPECTROSCOPY REVIEWS, 2021, 56 (07) : 531 - 552
  • [7] Compressed sensing FTIR nano-spectroscopy and nano-imaging
    Kaestner, Bernd
    Schmaehling, Franko
    Hornemann, Andrea
    Ulrich, Georg
    Hoehl, Arne
    Kruskopf, Mattias
    Pierz, Klaus
    Raschke, Markus B.
    Wuebbeler, Gerd
    Elster, Clemens
    OPTICS EXPRESS, 2018, 26 (14): : 18115 - 18124
  • [8] The chemical fingerprint of hair melanosomes by infrared nano-spectroscopy
    Stanic, Vesna
    Barbosa Maia, Francisco Carlos
    Freitas, Raul de Oliveira
    Montoro, Fabiano Emmanuel
    Evans-Lutterodt, Kenneth
    NANOSCALE, 2018, 10 (29) : 14245 - 14253
  • [9] Tip-enhanced photoluminescence nano-spectroscopy and nano-imaging
    Lee, Hyeongwoo
    Lee, Dong Yun
    Kang, Min Gu
    Koo, Yeonjeong
    Kim, Taehyun
    Park, Kyoung-Duck
    NANOPHOTONICS, 2020, 9 (10) : 3089 - 3110
  • [10] Ultrafast infrared near-field molecular nano-spectroscopy
    Xu, Xiaoji
    Craig, Ian M.
    Rang, Matthias
    Raschke, Markus B.
    XVIIITH INTERNATIONAL CONFERENCE ON ULTRAFAST PHENOMENA, 2013, 41