International audienceA prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding site (log Kass=9.4 and 7.3 for Cu+ and Ag+, respectively) based on the coordinating environment of the bacterial metallo-chaperone CusF, integrated with a terbium-ion-signaling moiety. Cation–π interactions were shown to enhance tryptophan triplet population, which subsequently sensitized, on the microsecond timescale, the long-lived terbium emission, offering a novel approach in bioinspired chemosensor design
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
International audienceA prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessi...
International audienceA prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessi...
A prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding...
A prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding...
A prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding...
A prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
International audienceA prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessi...
International audienceA prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessi...
A prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding...
A prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding...
A prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding...
A prototype luminescent turn-on probe for Cu+ (and Ag+) is described, harnessing a selective binding...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
International audienceSelective and sensitive detection of Cu(I) is an ongoing challenge due to its ...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...
Zinc and copper are essential and toxic for living organisms, so they are tightly regulated. To unde...