Advances in TERS (tip-enhanced Raman scattering) for biochemical applications

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Advances in TERS (tip-enhanced Raman scattering) for biochemical applications. / Treffer, Regina; Böhme, René; Deckert-Gaudig, Tanja; Lau, Katherine; Tiede, Stephan; Lin, Xiumei; Deckert, Volker.

In: BIOCHEM SOC T, Vol. 40, No. 4, 08.2012, p. 609-14.

Research output: SCORING: Contribution to journalSCORING: Review articleResearch

Harvard

Treffer, R, Böhme, R, Deckert-Gaudig, T, Lau, K, Tiede, S, Lin, X & Deckert, V 2012, 'Advances in TERS (tip-enhanced Raman scattering) for biochemical applications', BIOCHEM SOC T, vol. 40, no. 4, pp. 609-14. https://doi.org/10.1042/BST20120033

APA

Treffer, R., Böhme, R., Deckert-Gaudig, T., Lau, K., Tiede, S., Lin, X., & Deckert, V. (2012). Advances in TERS (tip-enhanced Raman scattering) for biochemical applications. BIOCHEM SOC T, 40(4), 609-14. https://doi.org/10.1042/BST20120033

Vancouver

Treffer R, Böhme R, Deckert-Gaudig T, Lau K, Tiede S, Lin X et al. Advances in TERS (tip-enhanced Raman scattering) for biochemical applications. BIOCHEM SOC T. 2012 Aug;40(4):609-14. https://doi.org/10.1042/BST20120033

Bibtex

@article{71d1a7fdc6f248eca8f6819bb682dc0f,
title = "Advances in TERS (tip-enhanced Raman scattering) for biochemical applications",
abstract = "TERS (tip-enhanced Raman scattering) provides exceptional spatial resolution without any need for labelling and has become a versatile tool for biochemical analysis. Two examples will be highlighted here. On the one hand, TERS measurements on a single mitochondrion are discussed, monitoring the oxidation state of the central iron ion of cytochrome c, leading towards a single protein characterization scheme in a natural environment. On the other hand, a novel approach of single molecule analysis is discussed, again based on TERS experiments on DNA and RNA, further highlighting the resolution capabilities of this method.",
keywords = "DNA, Nanotechnology, RNA, Spectrum Analysis, Raman, Journal Article, Research Support, Non-U.S. Gov't, Review",
author = "Regina Treffer and Ren{\'e} B{\"o}hme and Tanja Deckert-Gaudig and Katherine Lau and Stephan Tiede and Xiumei Lin and Volker Deckert",
year = "2012",
month = aug,
doi = "10.1042/BST20120033",
language = "English",
volume = "40",
pages = "609--14",
journal = "BIOCHEM SOC T",
issn = "0300-5127",
publisher = "PORTLAND PRESS LTD",
number = "4",

}

RIS

TY - JOUR

T1 - Advances in TERS (tip-enhanced Raman scattering) for biochemical applications

AU - Treffer, Regina

AU - Böhme, René

AU - Deckert-Gaudig, Tanja

AU - Lau, Katherine

AU - Tiede, Stephan

AU - Lin, Xiumei

AU - Deckert, Volker

PY - 2012/8

Y1 - 2012/8

N2 - TERS (tip-enhanced Raman scattering) provides exceptional spatial resolution without any need for labelling and has become a versatile tool for biochemical analysis. Two examples will be highlighted here. On the one hand, TERS measurements on a single mitochondrion are discussed, monitoring the oxidation state of the central iron ion of cytochrome c, leading towards a single protein characterization scheme in a natural environment. On the other hand, a novel approach of single molecule analysis is discussed, again based on TERS experiments on DNA and RNA, further highlighting the resolution capabilities of this method.

AB - TERS (tip-enhanced Raman scattering) provides exceptional spatial resolution without any need for labelling and has become a versatile tool for biochemical analysis. Two examples will be highlighted here. On the one hand, TERS measurements on a single mitochondrion are discussed, monitoring the oxidation state of the central iron ion of cytochrome c, leading towards a single protein characterization scheme in a natural environment. On the other hand, a novel approach of single molecule analysis is discussed, again based on TERS experiments on DNA and RNA, further highlighting the resolution capabilities of this method.

KW - DNA

KW - Nanotechnology

KW - RNA

KW - Spectrum Analysis, Raman

KW - Journal Article

KW - Research Support, Non-U.S. Gov't

KW - Review

U2 - 10.1042/BST20120033

DO - 10.1042/BST20120033

M3 - SCORING: Review article

C2 - 22817703

VL - 40

SP - 609

EP - 614

JO - BIOCHEM SOC T

JF - BIOCHEM SOC T

SN - 0300-5127

IS - 4

ER -