Li YK, Liu W, Jin G, Niu Y, Chen YP, Xie MX. Label-Free Sandwich Imaging Ellipsometry Immunosensor for Serological Detection of Procalcitonin. Anal Chem. 2018;90(13):8002–10.
Article CAS PubMed Google Scholar
Kong FY, Li WW, Wang JY, Wang W. UV-assisted photocatalytic synthesis of highly dispersed Ag nanoparticles supported on DNA decorated graphene for quantitative iodide analysis. Biosens Bioeletron. 2015;69:206–12.
Graham DL, Ferreira HA, Freitas PP, Cabral JMS. High sensitivity detection of molecular recognition using magnetically labelled biomolecules and magnetoresistive sensors. Biosens Bioeletron. 2003;18(4):483–8.
Aranda PR, Messina GA, Bertolino FA, Pereira SV, Baldo MAF, Raba J. Nanomaterials in fluorescent laser-based immunosensors: Review and applications. Microchem J. 2018;141:308–23.
Zhao LX, Sun L, Chu XG. Chemiluminescence immunoassay. Trac-Trends Anal Chem. 2009;28(4):404–15.
Wangoo N, Suri CR, Shekhawat G. Interaction of gold nanoparticles with protein: A spectroscopic study to monitor protein conformational changes. Appl Phys Lett. 2008;92(13): 133104.
Jiang D, Zhao XN, Liu YN, Chen HB, Lv WL, Qian C, Liu XW. Label-Free Probing of Molecule Binding Kinetics Using Single-Particle Interferometric Imaging. Anal Chem. 2021;93(22):7965–9.
Article CAS PubMed Google Scholar
Hinman SS, McKeating KS, Cheng Q. Surface Plasmon Resonance: Material and Interface Design for Universal Accessibility. Anal Chem. 2018;90(1):19–39.
Article CAS PubMed Google Scholar
Homola J. Surface plasmon resonance sensors for detection of chemical and biological species. Chem Rev. 2008;108(2):462–93.
Article CAS PubMed Google Scholar
Wark AW, Lee HJ, Qavi AJ, Corn RM. Nanoparticle-enhanced diffraction gratings for ultrasensitive surface plasmon biosensing. Anal Chem. 2007;79(17):6697–701.
Article CAS PubMed Google Scholar
Lou PY, Wu Q, Zhang C, Wang ZQ, Song YJ. Enhanced magneto-optical Kerr effect via the synergistic effect of surface plasmon resonance and spin-orbit coupling in Au@Pt nanohybrid layers. J Phys D-Appl Phys. 2023;56(37):375001.
Hutter E, Fendler JH. Exploitation of localized surface plasmon resonance. Adv Mater. 2004;16(19):1685–706.
Landry JP, Zhu XD, Gregg JP. Label-free detection of microarrays of biomolecules by oblique-incidence reflectivity difference microscopy. Opt Lett. 2004;29(6):581–3.
Article CAS PubMed Google Scholar
Zhan HL, Zhao K, Lu HB, Zhu J, Jin KJ, Yang GZ, Chen XH. In situ monitoring of water adsorption in active carbon using an oblique-incidence optical reflectance difference method. AIP Adv. 2017;7(9):095219.
Liu S, Zhu JH, He LP, Dai J, Lu HB, Wu L, Jin KJ, Yang GZ, Zhu H. Label-free, real-time detection of the dynamic processes of protein degradation using oblique-incidence reflectivity difference method. Appl Phys Lett. 2014;104(16):163701.
Article CAS PubMed PubMed Central Google Scholar
Zhu XD. Oblique-incidence optical reflectivity difference from a rough film of crystalline material. Phys Rev B. 2004;69(11):115407.
Schwarzacher W, Gray J, Zhu XD. Oblique incidence reflectivity difference as an in situ probe of Co electrodeposition on polycrystalline Au. Electrochem Solid-State Lett. 2003;6(5):C73–6.
Zhu XD. Symmetry consideration in zero loop-area Sagnac interferometry at oblique incidence for detecting magneto-optic Kerr effects. Rev Sci Instrum. 2017;88(8):083112.
Article CAS PubMed Google Scholar
Fei YY, Zhu XD, Liu LF, Lu HB, Chen ZH, Yang GZ. Oscillations in oblique-incidence optical reflection from a growth surface during layer-by-layer epitaxy. Phys Rev B. 2004;69(23):233405.
Thomas P, Nabighian E, Bartelt MC, Fong CY, Zhu XD. An oblique-incidence optical reflectivity difference and LEED study of rare-gas growth on a lattice-mismatched metal substrate. Appl Phys A-Mater. 2004;79(1):131–7.
Sun YS, Landry JP, Zhu XD. Evaluation of kinetics using label-free optical biosensors. Instrum Sci Technol. 2017;45(5):486–505.
Article CAS PubMed PubMed Central Google Scholar
Dai J, Li L, Wang JY, He LP, Lu HB, Ruan KC, Jin KJ, Yang GZ. Label-free detection repeatability of protein microarrays by oblique-incidence reflectivity difference method. Sci China-Phys Mech. 2012;55(12):2347–50.
Yuan K, Wang X, Lu H, Wen JA, Lu HB, Zhou YL, Jin KJ, Yang GZ, Li W, Ruan KC. Label-free detection of hybridization of oligonucleotides by oblique-incidence reflectivity difference method. Sci China-Phys Mech. 2010;53(8):1434–7.
Wang X, Lu H, Dai J, Wen JA, Yuan K, Lu HB, Jin KJ, Zhou YL, Yang GZ. Real-time and label-free detection of biomolecular interactions by oblique-incidence reflectivity difference method. Chin Phys B. 2011;20(1):010704.
He LP, Sun Y, Dai J, Wang JY, Lu HB, Wang SF, Jin KJ, Zhou YL, Yang GZ. Label-free and real-time detection of interactional dynamic processes of rabbit IgG with different concentrations and goat anti-rabbit IgG by oblique-incidence reflectivity difference method. Acta Phys Sin. 2012;61(6):060703.
Zhong CY, Li L, Chen N, Peng ZP, Hu WH. Spatially resolved electrochemical reversibility of a conducting polymer thin film imaged by oblique-incidence reflectivity difference. Chem Commun. 2020;56(13):1972–5.
Feng ZH, Li XY, Fang CX, Li JY, Wang RF, Hu WH. Polystyrene microsphere monolayer assembled on glass slide for label-free OIRD immunoassay with enhanced sensitivity. Sens Actuators B Chem. 2023;379:133290.
Wen J, Lu H, Wang X, Yuan K, Lu HB, Zhou YL, Jin KJ, Yang GZ, Li W, Ruan KC. Detection of protein microarrays by oblique-incidence reflectivity difference technique. Sci China-Phys Mech. 2010;53(2):306–9.
Fang CX, Li JY, Feng ZH, Li XY, Cheng M, Qiao Y, Hu WH. Spatiotemporal Mapping of Extracellular Electron Transfer Flux in a Microbial Fuel Cell Using an Oblique Incident Reflectivity Difference Technique. Anal Chem. 2022;94(30):10841–9.
Article CAS PubMed Google Scholar
Chen N, Fang CX, Li XY, Hu WH. Mechanism and kinetics of cathodic corrosion of fluorine-doped tin oxide revealed by in situ oblique incident reflectivity difference. Electrochem Commun. 2021;127:107037.
Fang CX, Zhong CY, Chen N, Yi LY, Li JY, Hu WH. Reusable OIRD Microarray Chips Based on a Bienzyme-Immobilized Polyaniline Nanowire Forest for Multiplexed Detection of Biological Small Molecules. Anal Chem. 2021;93(30):10697–703.
Article CAS PubMed Google Scholar
Li L, Zhong CY, Feng BM, Chen N, Dai J, Lu HB, Hu WH. Optical imaging of the potential distribution at transparent electrode/solution interfaces. Chem Commun. 2020;56(33):4531–4.
Li XY, Fang CX, Feng ZH, Li JY, Li Y, Hu WH. Label-free OIRD microarray chips with a nanostructured sensing interface: enhanced sensitivity and mechanism. Lab Chip. 2022;22(20):3910–9.
Article CAS PubMed Google Scholar
Li XY, Feng ZH, Fang CX, Wei YP, Ji DD, Hu WH. Non-fouling polymer brush grafted fluorine-doped tin oxide enabled optical and chemical enhancement for sensitive label-free antibody microarrays. Lab Chip. 2023;23(10):2477–86.
Article CAS PubMed Google Scholar
Zhong CY, Li L, Mei YH, Dai J, Hu WH, Lu ZS, Liu Y, Li CM, Lu HB. Chip architecture-enabled sensitivity enhancement of oblique-incidence reflectivity difference for label-free protein microarray detection. Sens Actuators B Chem. 2019;294:216–23.
Bi S, Dong Y, Jia XQ, Chen M, Zhong H, Ji B. Self-assembled multifunctional DNA nanospheres for biosensing and drug delivery into specific target cells. Nanoscale. 2015;7(16):7361–7.
Article CAS PubMed Google Scholar
Asadchy VS, Guo C, Faniayeu IA, Fan S. Three-dimensional Random Dielectric Colloid Metamaterial with Giant Isotropic Optical Activity. Laser Photonics Rev. 2020;14(10):2000151.
Cheng XR, Hau BYH, Endo T, Kerman K. Au nanoparticle-modified DNA sensor based on simultaneous electrochemical impedance spectroscopy and localized surface plasmon resonance. Biosens Bioeletron. 2014;53:513–8.
Chen DQ, Zhao L, Hu WH. Protein immobilization and fluorescence quenching on polydopamine thin films. J Colloid Interface Sci. 2016;477:123–30.
Article CAS PubMed Google Scholar
Waite JH. Surface chemistry - Mussel power. Nat Mater. 2008;7(1):8–9.
Comments (0)