32702-27-5Relevant academic research and scientific papers
A natural-product-inspired photonic logic gate based on photoinduced electron-transfer-generated dual-channel fluorescence
Montenegro, Jose-Maria,Perez-Inestrosa, Ezequiel,Collado, Daniel,Vida, Yolanda,Suau, Rafael
, p. 2353 - 2355 (2004)
(Equation Presented) Modified 1-benzylisoquinoline N-oxides can operate as molecular logic gates. The combination of dual-channel fluorescence emissions and the preferred interaction for selected chemical inputs allows one to design multifunction and self-reprogrammable molecular logic gates.
Rational design of novel photoinduced electron transfer type fluorescent probes for sodium cation
Kenmoku, Suguru,Urano, Yasuteru,Kanda, Koujirou,Kojima, Hirotatsu,Kikuchi, Kazuya,Nagano, Tetuso
, p. 11067 - 11073 (2007/10/03)
We have developed novel fluorescence probes for sodium cation based on photoinduced electron transfer (PeT). In this study, we rationally designed new probes and succeeded in achieving fluorescence enhancement upon sodium ion binding by reducing the HOMO
