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    • 2. 发明申请
    • AUTONOMOUS ELECTROCHROMIC ASSEMBLY
    • 自动电子总成
    • US20130201546A1
    • 2013-08-08
    • US13758387
    • 2013-02-04
    • ITN Energy Systems, Inc.
    • Brian Spencer BerlandBruce Roy LanningMichael Wayne Stowell, JR.
    • G02F1/163
    • G02F1/163G02F1/1533G02F2001/13324
    • This disclosure describes system and methods for creating an autonomous electrochromic assembly, and systems and methods for use of the autonomous electrochromic assembly in combination with a window. Embodiments described herein include an electrochromic assembly that has an electrochromic device, an energy storage device, an energy collection device, and an electrochromic controller device. These devices may be combined into a unitary electrochromic insert assembly. The electrochromic assembly may have the capability of generating power sufficient to operate and control an electrochromic device. This control may occur through the application of a voltage to an electrochromic device to change its opacity state. The electrochromic assembly may be used in combination with a window.
    • 本公开描述了用于创建自主电致变色组件的系统和方法,以及与窗口组合使用自主电致变色组件的系统和方法。 本文所述的实施方案包括具有电致变色装置,能量存储装置,能量收集装置和电致变色控制装置的电致变色组件。 这些装置可以组合成单一的电致变色插入组件。 电致变色组件可具有产生足以操作和控制电致变色装置的功率的能力。 该控制可以通过向电致变色装置施加电压来改变其不透明状态。 电致变色组件可以与窗口组合使用。
    • 3. 发明申请
    • RECHARGEABLE, THIN-FILM, ALL SOLID-STATE METAL-AIR BATTERY
    • 可充电,薄膜,所有固态金属电池
    • US20130171527A1
    • 2013-07-04
    • US13731554
    • 2012-12-31
    • ITN Energy Systems, Inc.
    • Bruce Roy LanningMichael Wayne Stowell, JR.Brian Spencer BerlandAndrew Colclasure
    • H01M12/08
    • H01M12/08H01M4/382H01M4/861Y02E60/128Y02E60/50
    • This disclosure describes metal-air battery devices that are rechargeable, thin film, and all solid-state. The disclosure further describes methods of manufacturing rechargeable, thin film, all solid-state, metal-air batteries. The devices disclosed include a porous cathode structure with an electrolyte incorporated therein. The porous cathode structure may be designed to contain pores of at least two distinct sizes (i.e., having bimodal pore size distribution), a smaller one to increase the active surface area of the cathode and a larger to facilitate the transport of gas-phase oxygen through the cathode. The methods disclosed include using pulsed microwave plasma enhanced chemical vapor deposition (p-μPECVD) to dynamically grow an electrolyte layer on the surface of the carbon within, or a desired portion of, the cathode structure.
    • 本公开描述了可再充电,薄膜和全固态的金属 - 空气电池装置。 本公开进一步描述了制造可再充电的薄膜,所有固态金属空气电池的方法。 所公开的装置包括其中并入有电解质的多孔阴极结构。 多孔阴极结构可以被设计为包含至少两个不同尺寸的孔(即,具有双峰孔径分布),较小的孔以增加阴极的活性表面积,并且更大以便于气相氧的输送 通过阴极。 所公开的方法包括使用脉冲微波等离子体增强化学气相沉积(p-muPECVD)来动态地生长阴极结构内部或所需部分内的碳表面上的电解质层。
    • 6. 发明授权
    • Autonomous electrochromic assembly
    • 自动电致变色组件
    • US08976440B2
    • 2015-03-10
    • US13758387
    • 2013-02-04
    • ITN Energy Systems, Inc.
    • Brian Spencer BerlandBruce Roy LanningMichael Wayne Stowell, Jr.
    • G02F1/153G02F1/15B64C1/14G02F1/163G02F1/133
    • G02F1/163G02F1/1533G02F2001/13324
    • This disclosure describes system and methods for creating an autonomous electrochromic assembly, and systems and methods for use of the autonomous electrochromic assembly in combination with a window. Embodiments described herein include an electrochromic assembly that has an electrochromic device, an energy storage device, an energy collection device, and an electrochromic controller device. These devices may be combined into a unitary electrochromic insert assembly. The electrochromic assembly may have the capability of generating power sufficient to operate and control an electrochromic device. This control may occur through the application of a voltage to an electrochromic device to change its opacity state. The electrochromic assembly may be used in combination with a window.
    • 本公开描述了用于创建自主电致变色组件的系统和方法,以及与窗口组合使用自主电致变色组件的系统和方法。 本文所述的实施方案包括具有电致变色装置,能量存储装置,能量收集装置和电致变色控制装置的电致变色组件。 这些装置可以组合成单一的电致变色插入组件。 电致变色组件可具有产生足以操作和控制电致变色装置的功率的能力。 该控制可以通过向电致变色装置施加电压来改变其不透明状态。 电致变色组件可以与窗口组合使用。
    • 9. 发明授权
    • Rechargeable, thin-film, all solid-state metal-air battery
    • 可充电,薄膜,全固态金属空气电池
    • US08980485B2
    • 2015-03-17
    • US13731554
    • 2012-12-31
    • ITN Energy Systems, Inc.
    • Bruce Roy LanningMichael Wayne Stowell, Jr.Brian Spencer BerlandAndrew Colclasure
    • H01M8/22H01M12/08H01M4/86H01M4/38
    • H01M12/08H01M4/382H01M4/861Y02E60/128Y02E60/50
    • This disclosure describes metal-air battery devices that are rechargeable, thin film, and all solid-state. The disclosure further describes methods of manufacturing rechargeable, thin film, all solid-state, metal-air batteries. The devices disclosed include a porous cathode structure with an electrolyte incorporated therein. The porous cathode structure may be designed to contain pores of at least two distinct sizes (i.e., having bimodal pore size distribution), a smaller one to increase the active surface area of the cathode and a larger to facilitate the transport of gas-phase oxygen through the cathode. The methods disclosed include using pulsed microwave plasma enhanced chemical vapor deposition (p-μPECVD) to dynamically grow an electrolyte layer on the surface of the carbon within, or a desired portion of, the cathode structure.
    • 本公开描述了可再充电,薄膜和全固态的金属 - 空气电池装置。 本公开进一步描述了制造可再充电的薄膜,所有固态金属空气电池的方法。 所公开的装置包括其中并入有电解质的多孔阴极结构。 多孔阴极结构可以被设计为包含至少两个不同尺寸的孔(即,具有双峰孔径分布),较小的孔以增加阴极的活性表面积,并且更大以便于气相氧的输送 通过阴极。 所公开的方法包括使用脉冲微波等离子体增强化学气相沉积(p-μPECVD)来动态地生长阴极结构内部或所需部分内的碳表面上的电解质层。