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    • 2. 发明授权
    • Nano-calorimeter device and associated methods of fabrication and use
    • 纳米量热仪装置及相关的制造和使用方法
    • US06988826B2
    • 2006-01-24
    • US10847180
    • 2004-05-17
    • Anis ZribiAzar AlizadehSuryaprakash GantiJuan Antonio SabateLoucas TsakalakosKenneth Roger Conway
    • Anis ZribiAzar AlizadehSuryaprakash GantiJuan Antonio SabateLoucas TsakalakosKenneth Roger Conway
    • G01K17/00G01N25/00
    • B82Y15/00G01K17/006G01N25/4866
    • The present invention provides a nano-calorimeter device operable for measuring and characterizing the thermodynamic and other physical properties of materials that are confined to essentially nano-scale dimensions. The nano-calorimeter device including a thin film membrane having a first surface and a second surface. The nano-calorimeter device also including a frame structure disposed adjacent to and in thermal contact with the first surface of the thin film membrane, the frame structure defining a plurality of hollow cells adjacent to and in thermal contact with the first surface of the thin film membrane. The nano-calorimeter device further including one or more micro-heating elements disposed adjacent to and in thermal contact with the second surface of the thin film membrane, the location of the one or more micro-heating elements disposed adjacent to the second surface of the thin film membrane substantially corresponding to the location of the plurality of hollow cells defined adjacent to the first surface of the thin film membrane.
    • 本发明提供一种可用于测量和表征被限制在基本上纳米级尺寸的材料的热力学和其它物理性能的纳米量热器装置。 纳米量热器装置包括具有第一表面和第二表面的薄膜膜。 所述纳米量热器装置还包括邻近所述薄膜膜的所述第一表面设置并与所述薄膜膜的第一表面热接触的框架结构,所述框架结构限定与所述薄膜的所述第一表面相邻并且与所述薄膜的第一表面热接触的多个中空细胞 膜。 所述纳米量热器装置还包括一个或多个设置在所述薄膜膜的第二表面附近并与之相接触的微加热元件,所述一个或多个微加热元件邻近所述薄膜膜的第二表面设置的位置 薄膜膜基本上对应于与薄膜膜的第一表面相邻限定的多个中空细胞的位置。
    • 3. 发明申请
    • Nano-calorimeter device and associated methods of fabrication and use
    • 纳米量热仪装置及相关的制造和使用方法
    • US20050254547A1
    • 2005-11-17
    • US10847180
    • 2004-05-17
    • Anis ZribiAzar AlizadehSuryaprakash GantiJuan SabateLoucas TsakalakosKenneth Conway
    • Anis ZribiAzar AlizadehSuryaprakash GantiJuan SabateLoucas TsakalakosKenneth Conway
    • G01K17/00G01N25/00G01N25/20G01N25/48
    • B82Y15/00G01K17/006G01N25/4866
    • The present invention provides a nano-calorimeter device operable for measuring and characterizing the thermodynamic and other physical properties of materials that are confined to essentially nano-scale dimensions. The nano-calorimeter device including a thin film membrane having a first surface and a second surface. The nano-calorimeter device also including a frame structure disposed adjacent to and in thermal contact with the first surface of the thin film membrane, the frame structure defining a plurality of hollow cells adjacent to and in thermal contact with the first surface of the thin film membrane. The nano-calorimeter device further including one or more micro-heating elements disposed adjacent to and in thermal contact with the second surface of the thin film membrane, the location of the one or more micro-heating elements disposed adjacent to the second surface of the thin film membrane substantially corresponding to the location of the plurality of hollow cells defined adjacent to the first surface of the thin film membrane.
    • 本发明提供一种可用于测量和表征被限制在基本上纳米级尺寸的材料的热力学和其它物理性能的纳米量热器装置。 纳米量热器装置包括具有第一表面和第二表面的薄膜膜。 所述纳米量热器装置还包括邻近所述薄膜膜的所述第一表面设置并与所述薄膜膜的第一表面热接触的框架结构,所述框架结构限定与所述薄膜的所述第一表面相邻并且与所述薄膜的第一表面热接触的多个中空细胞 膜。 所述纳米量热器装置还包括一个或多个设置在所述薄膜膜的第二表面附近并与之相接触的微加热元件,所述一个或多个微加热元件邻近所述薄膜膜的第二表面设置的位置 薄膜膜基本上对应于与薄膜膜的第一表面相邻限定的多个中空细胞的位置。