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3篇 您的检索式:作者名="Erkang Fan"
    题名 作者 年代 出处 被引量
1Iodine-Mediated Guanidine Formation through Aryl Sulfonyl-Activated Thioureas显示文摘Jizhen Li Cuiying Qin Erkang Fan 2009SynLett2009,15,:1
2Simple, fast, label-free, and nanoquencher-free system for operating multivalued DNA logic gates using polythymine templated CuNPs as signal reporters显示文摘布尔逻辑设备起一个关键作用在传统并且 nontraditional 分子的逻辑电路。这种二进制逻辑,各个在咬了被编码由(0, 1 ) ,有二仅仅输出 stateson 或离开(或高 / 低) 。因为有限计算能力和变化,当处理高密度或不明确 / 不精确的信息时,它从 multivalued 逻辑门正在面对挑战。然而,能执行不同 multivalued 逻辑计算的一个便宜、简单、通用的系统还没为进一步的学习被发展了,并且留下一个概念。此处,拿第三或并且作为模型设备禁止逻辑门,我们在场为把 poly 胸腺嘧啶(T) templated 铜 nanoparticles (CuNPs ) 用作信号记者的 multivalued DNA 逻辑门的一个新奇简单、快、没有标签、 nanoquencher 免费的系统的制造。Cu 2+ 和维生素酸(AA ) 的混合为所有第三的逻辑门作为一个通用平台被拿。poly-T 海滨和精巧地设计的互补 poly 腺嘌(A) 海滨的不同类型或者作为第三的输入被使用展出第三的输出状态(low/0, medium/1, high/2 ) 。尤其是,在是的这个平台没有 nanoquenchers poly -- A 海滨能作为不仅输入而且 poly-T templated CuNPs 的有效禁止者工作。而且,所有 DNA 是不需要复杂标记的未标记的单个海滨的 DNA 过程或顺序设计。上述设计极大地减少操作时间,费用,和复杂性。更重要地,因为 CuNPs 的快形成,第三的逻辑计算能在 20 min 以内被完成,并且所有他们分享一样的阀值价值。Daoqing Fan Erkang Wang Shaojun Dong 2017Nano Research2017,10,8:0
3Engineering DNA logic systems with non-canonical DNA-nanostructures:basic principles,recent developments and bio-applications显示文摘Engineering DNA logic systems is considered as one of the most promising strategies for next-generation molecular computers.Owing to the inherent features of DNA,such as low cost,easy synthesis,and controllable hybridization,various DNA logic devices with different functions have been developed in the recent decade.Besides,a variety of logic-programmed biological applications are also explored,which initiates a new chapter for DNA logic computing.Although this field has gained rapid developments,a systematical review that could not only elaborate the logic principles of diverse DNA logic devices but also outline recent representative works is urgently needed.In this review,we first elaborate the general classification and logical principle of diverse DNA logic devices,in which the operating strategy of these devices and representative examples are selectively presented.Then,we review state-of-the-art advancements in DNA computing based on different non-canonical DNA-nanostructures during the past decade,in which some classical works are summarized.After that,the innovative applications of DNA computing to logic-controlled bioanalysis,cell imaging,and drug load/delivery are selectively presented.Finally,we analyze current obstacles and suggest appropriate prospects for this area.Daoqing Fan Jun Wang Jiawen Han Erkang Wang Shaojun Dong 2022Science China Chemistry2022,65,2:0
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