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Chemical Communications (Cambridge, England)|April 30, 2025
Preparation of electrochemical aptamer-based sensors: a direct aryl diazonium grafting approachEssam M Dief, Wenxian Tang, Liam R Carroll, et al.
Journal of the American Chemical Society|October 4, 2013
Rh(I) complexes bearing N,N and N,P ligands anchored on glassy carbon electrodes: toward recyclable hydroamination catalystsAndrey A Tregubov, Khuong Q Vuong, Erwann Luais, et al.
Nanoscale|February 15, 2018
Thermoresponsive plasmonic core-satellite nanostructures with reversible, temperature sensitive optical propertiesFei Han, S R C Vivekchand, Alexander H Soeriyadi, et al.
Analytical and Bioanalytical Chemistry|January 17, 2007
Extending the dynamic range of electrochemical sensors using multiple modified electrodesEdith Chow, Elicia L S Wong, Owen Pascoe, et al.
Bioconjugate Chemistry|June 4, 2014
Antibody modified porous silicon microparticles for the selective capture of cellsBin Guan, Astrid Magenau, Simone Ciampi, et al.
Chemical Communications (Cambridge, England)|October 19, 2010
'Dispersible electrodes': a solution to slow response times of sensitive sensorsIan Y Goon, Leo M H Lai, May Lim, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|December 29, 2004
Stepwise synthesis of Gly-Gly-His on gold surfaces modified with mixed self-assembled monolayersWenrong R Yang, D Brynn Hibbert, Rui Zhang, et al.
ACS Applied Materials & Interfaces|June 21, 2013
Photolithographic strategy for patterning preformed, chemically modified, porous silicon photonic crystal using click chemistryYing Zhu, Bakul Gupta, Bin Guan, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|October 20, 2012
Depth-resolved chemical modification of porous silicon by wavelength-tuned irradiationBin Guan, Simone Ciampi, Erwann Luais, et al.
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