Tip Enhanced Raman Spectroscopy of Rhodamine 6G on nanostructured gold substrate

[1]  Gilad Haran,et al.  Time-Dependent Single-Molecule Raman Scattering as a Probe of Surface Dynamics , 2001 .

[2]  Alessandro Alabastri,et al.  Plasmon based biosensor for distinguishing different peptides mutation states , 2013, Scientific Reports.

[3]  E Di Fabrizio,et al.  Hot-electron nanoscopy using adiabatic compression of surface plasmons. , 2013, Nature nanotechnology.

[4]  L. Rothberg,et al.  Origins of blinking in single-molecule Raman spectroscopy. , 2005, The journal of physical chemistry. B.

[5]  A. Diaspro,et al.  Fabrication of large-area ordered and reproducible nanostructures for SERS biosensor application. , 2012, The Analyst.

[6]  A. Meixner,et al.  Surface- and tip-enhanced Raman spectroscopy of DNA , 2010 .

[7]  Renato Zenobi,et al.  Developments in and practical guidelines for tip-enhanced Raman spectroscopy. , 2012, Nanoscale.

[8]  Christian Hafner,et al.  Nanoscale roughness on metal surfaces can increase tip-enhanced Raman scattering by an order of magnitude. , 2007, Nano letters.

[9]  R. Zenobi,et al.  Single Molecule Tip-Enhanced Raman Spectroscopy with Silver Tips , 2007 .

[10]  Volker Deckert,et al.  Ultraflat transparent gold nanoplates--ideal substrates for tip-enhanced Raman scattering experiments. , 2009, Small.

[11]  R. Zenobi,et al.  Missing Amide I Mode in Gap-Mode Tip-Enhanced Raman Spectra of Proteins , 2012 .

[12]  E. Di Fabrizio,et al.  Reflection-mode TERS on Insulin Amyloid Fibrils with Top-Visual AFM Probes , 2012, Plasmonics.

[13]  D. Kern,et al.  Gold nanocone near-field scanning optical microscopy probes. , 2011, ACS nano.

[14]  Weihua Zhang,et al.  Near-Field Heating, Annealing, and Signal Loss in Tip-Enhanced Raman Spectroscopy , 2008 .

[15]  Dai Zhang,et al.  Tip-enhanced Raman spectroscopic studies of the hydrogen bonding between adenine and thymine adsorbed on Au (111). , 2010, Chemphyschem : a European journal of chemical physics and physical chemistry.

[16]  Renato Zenobi,et al.  Characterizing unusual metal substrates for gap‐mode tip‐enhanced Raman spectroscopy , 2013 .

[17]  D. Zahn,et al.  Surface-enhanced Raman scattering and gap-mode tip-enhanced Raman scattering investigations of phthalocyanine molecules on gold nanostructured substrates , 2014 .

[18]  Katrin F. Domke,et al.  Direct monitoring of plasmon resonances in a tip-surface gap of varying width , 2007 .

[19]  R. Zenobi,et al.  Nanoscale chemical imaging of segregated lipid domains using tip-enhanced Raman spectroscopy. , 2011, Physical chemistry chemical physics : PCCP.

[20]  M. Chaigneau,et al.  Tip enhanced Raman spectroscopy on azobenzene thiol self-assembled monolayers on Au(111) , 2009 .

[21]  Zachary D. Schultz,et al.  Tip enhanced Raman scattering: plasmonic enhancements for nanoscale chemical analysis , 2014 .

[22]  S. Kawata,et al.  DFT vibrational calculations of rhodamine 6G adsorbed on silver: analysis of tip-enhanced Raman spectroscopy. , 2005, The journal of physical chemistry. B.

[23]  Marco Lazzarino,et al.  Nanoscale chemical mapping using three-dimensional adiabatic compression of surface plasmon polaritons. , 2010, Nature Nanotechnology.