《生物傳感器與生物電子》擁有一個開放獲取的鏡像期刊《生物傳感器與生物電子:X》,具有相同的目標和范圍,編輯團隊,提交系統和嚴格的同行審查。生物傳感器被定義為包含生物材料、生物衍生材料或生物模擬材料的分析設備,這些分析設備與物理化學傳感器或傳感微系統密切相關或集成在一起,可以是光學、電化學、測溫、壓電、磁性或微機械(Turner et al., 1987;特納,1989)。《生物傳感器與生物電子學》是主要的國際期刊,致力于生物傳感器和生物電子學的研究、設計、開發和應用。這是一個跨學科期刊服務有興趣的專業人士生物材料開發和設計新穎的診斷和電子設備包括傳感器、DNA芯片,電子鼻子,"和μ-TAS。生物傳感器通常產生與特定分析物或一組分析物濃度成正比的數字電子信號。雖然信號在原則上可能是連續的,但可以將設備配置為產生單個測量值,以滿足特定的市場需求。生物傳感器的例子包括免疫傳感器、基于酶的生物傳感器、基于生物體和整個細胞的生物傳感器。它們已被應用于各種各樣的分析問題,包括在醫學、生物醫學研究、藥物發現、環境、食品、加工工業、安全和國防方面的應用。設計和研究分子和超分子結構與分子生物認知和仿生性能用于分析設備也包括在該期刊的范圍內。這里的重點是分子識別、納米技術、分子印跡和超分子化學之間的互補交叉,以提高器件的分析性能和魯棒性。新興的生物電子學領域尋求在更廣泛的范圍內,如生物燃料電池、用于信息處理、信息存儲、電子元件和執行器的仿生學和生物材料方面,結合電子技術來開發生物學。其中一個關鍵方面是生物材料與微、納米電子器件之間的接口。盡力保持連貫性在期刊的范圍,編輯會接受評論和論文明顯相關的社區,它描述重要的新概念,鞏固理解字段或實際應用提供重要的見解,制造和商業化的生物傳感器和生物電子學。
Biosensors & Bioelectronics has an open access mirror journal Biosensors & Bioelectronics: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review.Biosensors are defined as analytical devices incorporating a biological material, a biologically derived material or a biomimic intimately associated with or integrated within a physicochemical transducer or transducing microsystem, which may be optical, electrochemical, thermometric, piezoelectric, magnetic or micromechanical (Turner et al., 1987; Turner, 1989). Biosensors & Bioelectronics is the principal international journal devoted to research, design, development and application of biosensors and bioelectronics. It is an interdisciplinary journal serving professionals with an interest in the exploitation of biological materials and designs in novel diagnostic and electronic devices including sensors, DNA chips, electronic noses, lab-on-a-chip and μ-TAS. Biosensors usually yield a digital electronic signal which is proportional to the concentration of a specific analyte or group of analytes. While the signal may in principle be continuous, devices can be configured to yield single measurements to meet specific market requirements. Examples of Biosensors include immunosensors, enzyme-based biosensors, organism- and whole cell-based biosensors. They have been applied to a wide variety of analytical problems including uses in medicine, biomedical research, drug discovery, the environment, food, process industries, security and defence. The design and study of molecular and supramolecular structures with molecular biorecognition and biomimetic properties for use in analytical devices is also included within the scope of the journal. Here the focus is on the complementary intersection between molecular recognition, nanotechnology, molecular imprinting and supramolecular chemistry to improve the analytical performance and robustness of devices.The emerging field of Bioelectronics seeks to exploit biology in conjunction with electronics in a wider context encompassing, for example, biological fuel cells, bionics and biomaterials for information processing, information storage, electronic components and actuators. A key aspect is the interface between biological materials and micro- and nano-electronics.While endeavouring to maintain coherence in the scope of the journal, the editors will accept reviews and papers of obvious relevance to the community, which describe important new concepts, underpin understanding of the field or provide important insights into the practical application, manufacture and commercialisation of biosensors and bioelectronics.
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