-
公开(公告)号:US09142787B2
公开(公告)日:2015-09-22
申请号:US13651379
申请日:2012-10-12
发明人: Fiorenzo Omenetto , David L. Kaplan , Jason Amsden , Raffaella Capelli , Stefano Toffanin , Valentina Benfenati , Michele Muccini , Roberto Zamboni
CPC分类号: H01L51/0093 , B82Y5/00 , B82Y10/00 , C07K14/43586 , G01N33/502 , H01L51/0036 , H01L51/0053 , H01L51/052 , H01L51/0545 , H01L51/0562 , H01L51/0566 , H01L51/5296
摘要: The invention relates to ecosustainable and biocompatible, low cost, ambient friendly electronic and optoelectronic devices, such as transistors and light-emitting transistors, made with silk fibroin or blended with other biopolymers, methods for fabrication and methods of using the silk-based electronics and optoelectronics. The silk-based electronics and optoelectronics can be implanted in vivo and in vitro for biomedical applications, such as for drug discovery or drug screening assays and devices. The silk-based devices may be used in the food industry and embedded in packaging for tracking and sensing, for security purposes or exploited as disposable not harmful for the environment efficient general electronic and optoelectronic devices.
摘要翻译: 本发明涉及用丝素蛋白制成或与其他生物聚合物混合的生物可降解和生物兼容,低成本,环境友好的电子和光电器件,例如晶体管和发光晶体管,其制造方法和使用丝基电子学的方法以及 光电子学。 基于丝的电子和光电子可以在体内和体外植入用于生物医学应用,例如用于药物发现或药物筛选测定和装置。 基于丝绸的设备可以用于食品工业,并且为了安全目的而被嵌入到用于跟踪和感测的包装中,或者被开发为一次性对环境有效的通用电子和光电子器件无害的。
-
公开(公告)号:US20140093902A1
公开(公告)日:2014-04-03
申请号:US13651379
申请日:2012-10-12
申请人: Tufts University
发明人: Fiorenzo Omenetto , David L. Kaplan , Jason Amsden , Raffaella Capelli , Stefano Toffanin , Valentina Benfenati , Michele Muccini , Roberto Zamboni
CPC分类号: H01L51/0093 , B82Y5/00 , B82Y10/00 , C07K14/43586 , G01N33/502 , H01L51/0036 , H01L51/0053 , H01L51/052 , H01L51/0545 , H01L51/0562 , H01L51/0566 , H01L51/5296
摘要: The invention relates to ecosustainable and biocompatible, low cost, ambient friendly electronic and optoelectronic devices, such as transistors and light-emitting transistors, made with silk fibroin or blended with other biopolymers, methods for fabrication and methods of using the silk-based electronics and optoelectronics. The silk-based electronics and optoelectronics can be implanted in vivo and in vitro for biomedical applications, such as for drug discovery or drug screening assays and devices. The silk-based devices may be used in the food industry and embedded in packaging for tracking and sensing, for security purposes or exploited as disposable not harmful for the environment efficient general electronic and optoelectronic devices.
摘要翻译: 本发明涉及用丝素蛋白制成或与其他生物聚合物混合的生物可降解和生物兼容,低成本,环境友好的电子和光电器件,例如晶体管和发光晶体管,其制造方法和使用丝基电子学的方法以及 光电子学。 基于丝的电子和光电子可以在体内和体外植入用于生物医学应用,例如用于药物发现或药物筛选测定和装置。 基于丝绸的设备可以用于食品工业,并且为了安全目的而被嵌入到用于跟踪和感测的包装中,或者被开发为一次性对环境有效的通用电子和光电子器件无害的。
-