Page last updated: 2024-08-22

ruthenium and cadmium telluride

ruthenium has been researched along with cadmium telluride in 7 studies

Research

Studies (7)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's0 (0.00)29.6817
2010's7 (100.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Ge, S; Liu, W; Song, X; Wang, S; Yan, M; Yu, J; Zhang, Y1
Chen, L; He, Z; Ji, X; Luo, M; Xiang, X; Zhang, C1
He, Z; Ji, X; Liu, Y; Luo, M; Xiang, X; Yan, J; Zhou, G1
Ding, HG; Huang, YX; Xie, HY; Zhang, R; Zhao, D; Zhong, HZ1
Hu, B; Huang, S; Qiu, H; Su, W; Xiao, Q; Zhou, Q; Zhu, F1
Biazzotto, JC; Burks, P; Cicillini, SA; da Silva, RS; Ford, PC; Franco, LP; Garcia, J; Mikhailovsky, A; Schiavon, MA1
Chen, M; Wang, Q; Wang, S; Wen, W; Zhang, H; Zhang, X1

Other Studies

7 other study(ies) available for ruthenium and cadmium telluride

ArticleYear
Magnetic beads-based electrochemiluminescence immunosensor for determination of cancer markers using quantum dot functionalized PtRu alloys as labels.
    The Analyst, 2012, May-07, Volume: 137, Issue:9

    Topics: Alloys; Biomarkers, Tumor; Biosensing Techniques; Cadmium Compounds; Chitosan; Electrochemistry; Ferrosoferric Oxide; Flow Injection Analysis; Humans; Immunoassay; Luminescent Measurements; Magnets; Microspheres; Nanopores; Platinum; Quantum Dots; Ruthenium; Tellurium

2012
A fluorescence-based colorimetric droplet platform for biosensor application to the detection of α-fetoprotein.
    The Analyst, 2012, Dec-07, Volume: 137, Issue:23

    Topics: alpha-Fetoproteins; Biosensing Techniques; Cadmium Compounds; Colorimetry; Coordination Complexes; Immunoassay; Limit of Detection; Quantum Dots; Ruthenium; Spectrometry, Fluorescence; Tellurium

2012
An ultrasensitive biosensor for DNA detection based on hybridization chain reaction coupled with the efficient quenching of a ruthenium complex to CdTe quantum dots.
    Chemical communications (Cambridge, England), 2013, Aug-28, Volume: 49, Issue:67

    Topics: Biosensing Techniques; Cadmium Compounds; Coordination Complexes; DNA; DNA, Viral; Equipment Design; Papillomaviridae; Quantum Dots; Ruthenium; Sensitivity and Specificity; Spectrometry, Fluorescence; Tellurium

2013
Sensitive single-color fluorescence "off-on" switch system for dsDNA detection based on quantum dots-ruthenium assembling dyads.
    Biosensors & bioelectronics, 2014, Jun-15, Volume: 56

    Topics: Biosensing Techniques; Cadmium Compounds; Coordination Complexes; DNA, Viral; Fluorescent Dyes; Hepatitis B; Hepatitis B virus; Humans; Quantum Dots; Ruthenium; Spectrometry, Fluorescence; Tellurium

2014
A sensitive quantum dots-based "OFF-ON" fluorescent sensor for ruthenium anticancer drugs and ctDNA.
    Colloids and surfaces. B, Biointerfaces, 2014, May-01, Volume: 117

    Topics: Animals; Antineoplastic Agents; Biosensing Techniques; Cadmium Compounds; Cattle; DNA; Fluorescence; Linear Models; Quantum Dots; Ruthenium; Spectrometry, Fluorescence; Spectrophotometry, Ultraviolet; Tellurium

2014
Photoreactivity of a quantum dot-ruthenium nitrosyl conjugate.
    The journal of physical chemistry. A, 2014, Dec-26, Volume: 118, Issue:51

    Topics: Cadmium Compounds; Nitrogen Oxides; Photochemical Processes; Quantum Dots; Ruthenium; Tellurium

2014
Enhanced electrochemiluminescence of RuSi nanoparticles for ultrasensitive detection of ochratoxin A by energy transfer with CdTe quantum dots.
    Biosensors & bioelectronics, 2016, May-15, Volume: 79

    Topics: Aspergillus; Biosensing Techniques; Cadmium Compounds; Electrochemical Techniques; Energy Transfer; Humans; Luminescence; Luminescent Measurements; Mycotoxins; Nanoparticles; Ochratoxins; Penicillium; Quantum Dots; Ruthenium; Silicon Dioxide; Tellurium; Zea mays

2016