Exploring the authentication of COVID-19 vaccines using Surface-enhanced handheld Raman spectroscopy (SERS) equipped with orbital Raster scattering and machine learning
暂无分享,去创建一个
[1] V. Jaiswal,et al. Fake COVID-19 vaccination in India: an emerging dilemma? , 2021, Postgraduate Medical Journal.
[2] S. Villapol,et al. More than 50 long-term effects of COVID-19: a systematic review and meta-analysis , 2021, Scientific Reports.
[3] C. Demirdover. COVID-19-vaccines , 2021, Reactions Weekly.
[4] JaCinta S. Batson,et al. Trace level detection of select opioids (fentanyl, hydrocodone, oxycodone, and tramadol) in suspect pharmaceutical tablets using surface‐enhanced Raman scattering (SERS) with handheld devices , 2020, Journal of forensic sciences.
[5] L. Leite,et al. Vaccines for COVID-19: perspectives from nucleic acid vaccines to BCG as delivery vector system , 2020, Microbes and Infection.
[6] S. Mohammadi-Samani,et al. COVID-19 outbreak: Challenges in pharmacotherapy based on pharmacokinetic and pharmacodynamic aspects of drug therapy in patients with moderate to severe infection , 2020, Heart & Lung.
[7] B. Arafat,et al. Authentication of Antibiotics Using Portable Near-Infrared Spectroscopy and Multivariate Data Analysis , 2020, Applied spectroscopy.
[8] N. Tokranova,et al. Surface Enhanced Raman Spectroscopy for Single Molecule Protein Detection , 2019, Scientific Reports.
[9] A. Koçak,et al. SERS, Raman, and DFT analyses of fentanyl and carfentanil: Toward detection of trace samples , 2017 .
[10] Xingchang Fu,et al. Investigation of simultaneously existed Raman scattering enhancement and inhibiting fluorescence using surface modified gold nanostars as SERS probes , 2017, Scientific Reports.
[11] Rino Rappuoli,et al. Vaccines for the 21st century , 2014, EMBO molecular medicine.
[12] J. Church,et al. Raman spectroscopy in the analysis of food and pharmaceutical nanomaterials , 2014, Journal of food and drug analysis.
[13] Duncan Graham,et al. Chemical and bioanalytical applications of surface enhanced Raman scattering spectroscopy. , 2008, Chemical Society reviews.
[14] J. Cherry. The chronology of the 2002–2003 SARS mini pandemic , 2004, Paediatric Respiratory Reviews.
[15] Bernhard Lendl,et al. A New Method for Fast Preparation of Highly Surface-Enhanced Raman Scattering (SERS) Active Silver Colloids at Room Temperature by Reduction of Silver Nitrate with Hydroxylamine Hydrochloride , 2003 .
[16] J. Benevides,et al. Characterization of DNA structures by Raman spectroscopy: high-salt and low-salt forms of double helical poly(dG-dC) in H2O and D2O solutions and application to B, Z and A-DNA. , 1983, Nucleic acids research.
[17] D. L. Jeanmaire,et al. Surface raman spectroelectrochemistry: Part I. Heterocyclic, aromatic, and aliphatic amines adsorbed on the anodized silver electrode , 1977 .
[18] M. Fleischmann,et al. Raman spectra of pyridine adsorbed at a silver electrode , 1974 .
[19] R. Frontiera,et al. SERS: Materials, applications, and the future , 2012 .
[20] Heng Tao Shen,et al. Principal Component Analysis , 2009, Encyclopedia of Biometrics.