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Title: High throughput near infrared screening discovers DNA-templated silver clusters with peak fluorescence beyond 950 nm

Abstract

High throughput near infrared screening technology discovers DNA-stabilized silver clusters with fluorescence beyond 1000 nm.

Authors:
 [1]; ORCiD logo [2];  [1];  [3]; ORCiD logo [3]; ORCiD logo [1]
  1. Univ. of California, Santa Barbara, CA (United States)
  2. Los Alamos National Lab. (LANL), Los Alamos, NM (United States)
  3. University at Albany, SUNY, Albany, NY (United States)
Publication Date:
Research Org.:
Los Alamos National Lab. (LANL), Los Alamos, NM (United States)
Sponsoring Org.:
USDOE National Nuclear Security Administration (NNSA); USDOE Office of Science (SC); USDOE Laboratory Directed Research and Development (LDRD) Program
OSTI Identifier:
1479893
Alternate Identifier(s):
OSTI ID: 1479965
Report Number(s):
LA-UR-18-29958; LA-UR-18-28178
Journal ID: ISSN 2040-3364; NANOHL
Grant/Contract Number:  
AC52-06NA25396; 89233218CNA000001
Resource Type:
Accepted Manuscript
Journal Name:
Nanoscale
Additional Journal Information:
Journal Volume: 10; Journal Issue: 42; Journal ID: ISSN 2040-3364
Publisher:
Royal Society of Chemistry
Country of Publication:
United States
Language:
English
Subject:
59 BASIC BIOLOGICAL SCIENCES; 37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY; 36 MATERIALS SCIENCE; Material Science

Citation Formats

Swasey, Steven M., Copp, Stacy Maria, Nicholson, Hunter C., Gorovits, Alexander, Bogdanov, Petko, and Gwinn, Elisabeth G. High throughput near infrared screening discovers DNA-templated silver clusters with peak fluorescence beyond 950 nm. United States: N. p., 2018. Web. doi:10.1039/C8NR05781H.
Swasey, Steven M., Copp, Stacy Maria, Nicholson, Hunter C., Gorovits, Alexander, Bogdanov, Petko, & Gwinn, Elisabeth G. High throughput near infrared screening discovers DNA-templated silver clusters with peak fluorescence beyond 950 nm. United States. https://doi.org/10.1039/C8NR05781H
Swasey, Steven M., Copp, Stacy Maria, Nicholson, Hunter C., Gorovits, Alexander, Bogdanov, Petko, and Gwinn, Elisabeth G. Wed . "High throughput near infrared screening discovers DNA-templated silver clusters with peak fluorescence beyond 950 nm". United States. https://doi.org/10.1039/C8NR05781H. https://www.osti.gov/servlets/purl/1479893.
@article{osti_1479893,
title = {High throughput near infrared screening discovers DNA-templated silver clusters with peak fluorescence beyond 950 nm},
author = {Swasey, Steven M. and Copp, Stacy Maria and Nicholson, Hunter C. and Gorovits, Alexander and Bogdanov, Petko and Gwinn, Elisabeth G.},
abstractNote = {High throughput near infrared screening technology discovers DNA-stabilized silver clusters with fluorescence beyond 1000 nm.},
doi = {10.1039/C8NR05781H},
journal = {Nanoscale},
number = 42,
volume = 10,
place = {United States},
year = {Wed Oct 17 00:00:00 EDT 2018},
month = {Wed Oct 17 00:00:00 EDT 2018}
}

Journal Article:
Free Publicly Available Full Text
Publisher's Version of Record

Citation Metrics:
Cited by: 21 works
Citation information provided by
Web of Science

Figures / Tables:

Fig. 1 Fig. 1: NIR emission from AgN-DNA formed in three separate 384-well microplates containing a total of 844 unique DNA strands. Wells for which <$λ$> exceeds 750 nm are marked by squares with sizes that indicate integrated spectral intensity (color bar for <$λ$> is at the lower right). Axes denote themore » well location of each template by row letter and column number. UV excitation (280–320 nm). Plates A, B and C contained 375, 374 and 95 DNA templates, respectively.« less

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Works referenced in this record:

Magic Numbers in DNA-Stabilized Fluorescent Silver Clusters Lead to Magic Colors
journal, March 2014

  • Copp, Stacy M.; Schultz, Danielle; Swasey, Steven
  • The Journal of Physical Chemistry Letters, Vol. 5, Issue 6
  • DOI: 10.1021/jz500146q

Enhancing near IR luminescence of thiolate Au nanoclusters by thermo treatments and heterogeneous subcellular distributions
journal, January 2014

  • Conroy, Cecil V.; Jiang, Jie; Zhang, Chen
  • Nanoscale, Vol. 6, Issue 13
  • DOI: 10.1039/c4nr00827h

DNA-Protected Silver Clusters for Nanophotonics
journal, February 2015

  • Gwinn, Elisabeth; Schultz, Danielle; Copp, Stacy
  • Nanomaterials, Vol. 5, Issue 1
  • DOI: 10.3390/nano5010180

Indocyanine green fluorescence in second near-infrared (NIR-II) window
journal, November 2017


Evidence for Rod-Shaped DNA-Stabilized Silver Nanocluster Emitters
journal, February 2013

  • Schultz, Danielle; Gardner, Kira; Oemrawsingh, Sumant S. R.
  • Advanced Materials, Vol. 25, Issue 20
  • DOI: 10.1002/adma.201204624

DNA Scaffolded Silver Clusters: A Critical Study
journal, February 2016


UV Excitation of DNA Stabilized Ag Cluster Fluorescence via the DNA Bases
journal, November 2011

  • O’Neill, Patrick R.; Gwinn, Elisabeth G.; Fygenson, Deborah Kuchnir
  • The Journal of Physical Chemistry C, Vol. 115, Issue 49
  • DOI: 10.1021/jp206110r

Corrigendum: Optical properties of biological tissues: a review
journal, June 2013


Second window for in vivo imaging
journal, November 2009

  • Smith, Andrew M.; Mancini, Michael C.; Nie, Shuming
  • Nature Nanotechnology, Vol. 4, Issue 11
  • DOI: 10.1038/nnano.2009.326

Noble Metal Clusters: Applications in Energy, Environment, and Biology
journal, May 2014

  • Mathew, Ammu; Pradeep, Thalappil
  • Particle & Particle Systems Characterization, Vol. 31, Issue 10
  • DOI: 10.1002/ppsc.201400033

Ror2 signaling regulates Golgi structure and transport through IFT20 for tumor invasiveness
journal, January 2017


Near-Infrared Photoluminescent Carbon Nanotubes for Imaging of Brown Fat
journal, March 2017

  • Yudasaka, Masako; Yomogida, Yohei; Zhang, Minfang
  • Scientific Reports, Vol. 7, Issue 1
  • DOI: 10.1038/srep44760

Deep-tissue anatomical imaging of mice using carbon nanotube fluorophores in the second near-infrared window
journal, May 2011

  • Welsher, K.; Sherlock, S. P.; Dai, H.
  • Proceedings of the National Academy of Sciences, Vol. 108, Issue 22
  • DOI: 10.1073/pnas.1014501108

Adaptation of a visible wavelength fluorescence microplate reader for discovery of near-infrared fluorescent probes
journal, September 2018

  • Swasey, Steven M.; Nicholson, Hunter C.; Copp, Stacy M.
  • Review of Scientific Instruments, Vol. 89, Issue 9
  • DOI: 10.1063/1.5023258

Shortwave infrared fluorescence imaging with the clinically approved near-infrared dye indocyanine green
journal, April 2018

  • Carr, Jessica A.; Franke, Daniel; Caram, Justin R.
  • Proceedings of the National Academy of Sciences, Vol. 115, Issue 17
  • DOI: 10.1073/pnas.1718917115

NIR-I-to-NIR-II fluorescent nanomaterials for biomedical imaging and cancer therapy
journal, January 2018

  • Zhao, Jingya; Zhong, Dian; Zhou, Shaobing
  • Journal of Materials Chemistry B, Vol. 6, Issue 3
  • DOI: 10.1039/C7TB02573D

Fluorescence Quantum Yields of a Series of Red and Near-Infrared Dyes Emitting at 600−1000 nm
journal, February 2011

  • Rurack, Knut; Spieles, Monika
  • Analytical Chemistry, Vol. 83, Issue 4
  • DOI: 10.1021/ac101329h

Unusually large Stokes shift for a near-infrared emitting DNA-stabilized silver nanocluster
journal, February 2018

  • Bogh, Sidsel Ammitzbøll; Carro-Temboury, Miguel R.; Cerretani, Cecilia
  • Methods and Applications in Fluorescence, Vol. 6, Issue 2
  • DOI: 10.1088/2050-6120/aaa8bc

A target-induced logically reversible logic gate for intelligent and rapid detection of pathogenic bacterial genes
journal, January 2018

  • Deng, Jiankang; Tao, Zhanhui; Liu, Yaqing
  • Chemical Communications, Vol. 54, Issue 25
  • DOI: 10.1039/C8CC00178B

Base Motif Recognition and Design of DNA Templates for Fluorescent Silver Clusters by Machine Learning
journal, July 2014

  • Copp, Stacy M.; Bogdanov, Petko; Debord, Mark
  • Advanced Materials, Vol. 26, Issue 33
  • DOI: 10.1002/adma.201401402

Near-infrared emitting probes for biological imaging: Organic fluorophores, quantum dots, fluorescent proteins, lanthanide(III) complexes and nanomaterials
journal, September 2017


Optically Enhanced, Near-IR, Silver Cluster Emission Altered by Single Base Changes in the DNA Template
journal, June 2011

  • Petty, Jeffrey T.; Fan, Chaoyang; Story, Sandra P.
  • The Journal of Physical Chemistry B, Vol. 115, Issue 24
  • DOI: 10.1021/jp202024x

Fluorescence Color by Data-Driven Design of Genomic Silver Clusters
journal, July 2018


Transfection of living HeLa cells with fluorescent poly-cytosine encapsulated Ag nanoclusters
journal, January 2010

  • Antoku, Yasuko; Hotta, Jun-ichi; Mizuno, Hideaki
  • Photochemical & Photobiological Sciences, Vol. 9, Issue 5
  • DOI: 10.1039/c0pp00015a

Fluorescent silver nanoclusters stabilized by DNA scaffolds
journal, January 2014

  • Yuan, Zhiqin; Chen, Ying-Chieh; Li, Hung-Wen
  • Chemical Communications, Vol. 50, Issue 69
  • DOI: 10.1039/C4CC02981J

Base Motif Recognition and Design of DNA Templates for Fluorescent Silver Clusters by Machine Learning
journal, April 2016

  • Copp, Stacy M.; Bogdanov, Petko; Debord, Mark
  • Advanced Materials, Vol. 28, Issue 16
  • DOI: 10.1002/adma.201600801

DNA Scaffolded Silver Clusters: A Critical Study
text, January 2016

  • Sengupta, Bidisha; Corley, Christa; Cobb, Keith
  • Columbia University
  • DOI: 10.7916/d8sf34vn

Works referencing / citing this record:

A new silver cluster that emits bright-blue phosphorescence
journal, January 2020

  • Yang, Jin-Sen; Zhang, Miao-Miao; Han, Zhen
  • Chemical Communications, Vol. 56, Issue 16
  • DOI: 10.1039/c9cc09439c

Figures/Tables have been extracted from DOE-funded journal article accepted manuscripts.