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Complex Logic Functions Implemented with Quantum Dot Bionanophotonic Circuits

机译:用量子点双离子光子电路实现的复杂逻辑功能

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We combine quantum dots (QDs) with long-lifetime terbium complexes (Tb), a near-IR Alexa Fluor dye (A647), and self-assembling peptides to demonstrate combinatorial and sequential bionanophotonic logic devices that function by time-gated Forster resonance energy transfer (FRET). Upon excitation, the Tb-QD-A647 FRET-complex produces time-dependent photoluminescent signatures from multi-FRET pathways enabled by the capacitor-like behavior of the Tb, The unique photoluminescent signatures are manipulated by ratiometrically varying dye/Tb inputs and collection time. Fluorescent output is converted into Boolean logic states to create complex arithmetic circuits including the half-adder/half-subtractor, 2:1 multiplexer/1:2 demultiplexer, and a 3-digit, 16-combination keypad lock.
机译:我们将量子点(QD)与长寿命的complex络合物(Tb),近红外Alexa Fluor染料(A647)和自组装肽结合在一起,以证明可通过门控Forster共振能量起作用的组合和顺序仿生光子逻辑器件转移(FRET)。激发后,Tb-QD-A647 FRET络合物通过Tb的类似电容器的行为从多个FRET途径产生与时间相关的光致发光特征。通过按比例改变染料/ Tb输入和收集时间来操纵独特的光致发光特征。 。荧光输出被转换成布尔逻辑状态,以创建复杂的算术电路,包括半加法器/半减法器,2:1多路复用器/ 1:2多路分解器以及3位16组合键盘锁。

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