Gold Nanoparticle-Graphite-Like C3N4 Nanosheet Nanohybrids Used for Electrochemiluminescent Immunosensor L Chen, X Zeng, P Si, Y Chen, Y Chi, DH Kim, G Chen Analytical chemistry 86 (9), 4188-4195, 2014 | 403 | 2014 |
Preparation of graphite-like carbon nitride nanoflake film with strong fluorescent and electrochemiluminescent activity L Chen, D Huang, S Ren, T Dong, Y Chi, G Chen Nanoscale 5 (1), 225-230, 2013 | 325 | 2013 |
Gas-mediated cancer bioimaging and therapy L Chen, SF Zhou, L Su, J Song ACS nano 13 (10), 10887-10917, 2019 | 262 | 2019 |
Tailored graphitic carbon nitride nanostructures: synthesis, modification, and sensing applications L Chen, J Song Advanced Functional Materials 27 (39), 1702695, 2017 | 170 | 2017 |
Circulating Tumor Cells: Moving Biological Insights into Detection L Chen, AM Bode, Z Dong Theranostics 7 (10), 2606-2619, 2017 | 139 | 2017 |
Escherichia coli infection induces autoimmune cholangitis and anti-mitochondrial antibodies in non-obese diabetic (NOD).B6 (Idd10/Idd18) mice JJ Wang, GX Yang, WC Zhang, L Lu, K Tsuneyama, M Kronenberg, ... Clinical & Experimental Immunology 175 (2), 192-201, 2014 | 106* | 2014 |
Carbon dioxide gas sensor based on ionic liquid-induced electrochemiluminescence L Chen, D Huang, S Ren, Y Chi, G Chen Analytical chemistry 83 (17), 6862-6867, 2011 | 59 | 2011 |
Signal-on electrochemiluminescent aptasensors based on target controlled permeable films L Chen, X Zeng, AR Ferhan, Y Chi, DH Kim, G Chen Chemical Communications 51 (6), 1035-1038, 2015 | 52 | 2015 |
Installing logic gates in permeability controllable polyelectrolyte-carbon nitride films for detecting proteases and nucleases L Chen, X Zeng, A Dandapat, Y Chi, D Kim Analytical chemistry 87 (17), 8851-8857, 2015 | 49 | 2015 |
Role of apoptosis in cancer resistance to chemotherapy L Chen, Y Zeng, SF Zhou Current understanding of apoptosis-programmed cell death, 2018 | 48 | 2018 |
Transcriptional-readthrough RNAs reflect the phenomenon of “a gene contains gene (s)” or “gene (s) within a gene” in the human genome, and thus are not chimeric RNAs Y He, C Yuan, L Chen, M Lei, L Zellmer, H Huang, DJ Liao Genes 9 (1), 40, 2018 | 36 | 2018 |
Nano-sized platinum as a mimic of uricase catalyzing the oxidative degradation of uric acid Y Dong, Y Chi, X Lin, L Zheng, L Chen, G Chen Physical Chemistry Chemical Physics 13 (13), 6319-6324, 2011 | 36 | 2011 |
Ultrasensitive gaseous NH3 sensor based on ionic liquid-mediated signal-on electrochemiluminescence L Chen, D Huang, Y Zhang, T Dong, C Zhou, S Ren, Y Chi, G Chen Analyst 137 (15), 3514-3519, 2012 | 35 | 2012 |
The well-accepted notion that gene amplification contributes to increased expression still remains, after all these years, a reasonable but unproven assumption Y Jia, L Chen, Q Jia, X Dou, N Xu, DJ Liao Journal of carcinogenesis 15, 2016 | 33 | 2016 |
A single-nanoparticle NO 2 gas sensor constructed using active molecular plasmonics L Chen, B Wu, L Guo, R Tey, Y Huang, DH Kim Chemical Communications 51 (7), 1326-1329, 2015 | 30 | 2015 |
Single plasmonic nanoparticles for ultrasensitive DNA sensing: From invisible to visible L Guo, L Chen, S Hong, DH Kim Biosensors and Bioelectronics 79, 266-272, 2016 | 28 | 2016 |
Heated indium tin oxide cell for studying ionic liquid-mediated electrochemiluminescence L Chen, Y Chi, X Zheng, Y Zhang, G Chen Analytical chemistry 81 (6), 2394-2398, 2009 | 28 | 2009 |
To know how a gene works, we need to redefine it first but then, more importantly, to let the cell itself decide how to transcribe and process its RNAs Y Jia, L Chen, Y Ma, J Zhang, N Xu, DJ Liao International Journal of Biological Sciences 11 (12), 1413, 2015 | 26 | 2015 |
An ionic liquid-mediated electrochemiluminescent sensor for the detection of sulfur dioxide at the ppb level L Chen, Y Zhang, S Ren, D Huang, C Zhou, Y Chi, G Chen Analyst 138 (22), 7006-7011, 2013 | 26 | 2013 |
Tris (2, 2’‐bipyridyl) ruthenium (II)‐Nanomaterial Co‐Reactant Electrochemiluminescence L Chen, J Wei, Y Chi, SF Zhou ChemElectroChem 6 (15), 3878-3884, 2019 | 25 | 2019 |