摘要:
A terminal and a method for configuring a graphic user interface (GUI) thereof are disclosed. The method includes determining which one of a first mode and a second mode is selected when a GUI configuring function is selected, selecting at least one of an image and a color if the first mode is selected, selecting a color if the second mode is selected and, if an image is required, an image, extracting a color code using the selected color and/or image, configuring the extracted color code and the selected image as a GUI set, and storing the GUI set and applying the GUI set to a GUI element.
摘要:
There is provided a method for preparation of a transition metal electroplated porous carbon nanofiber composite for hydrogen storage. Specifically, the preparation method of a transition metal electroplated porous carbon nanofiber composite for hydrogen storage according to the present invention comprises electroplating a transition metal with a controlled particle diameter and a surface dispersion ratio on a porous carbon nanofiber with specific surface area from 500 to 3000 m2/g, pore volume from 0.1 to 2.0 cc/g and diameter from 10 to 500 nm. With increased hydrogen storage capacity, the transition metal electroplated porous carbon nanofiber composite provided by the present invention can be utilized as hydrogen storage medium of active material for electrodes of electrochemical devices, such as fuel cell, secondary cell and supercapcitor.
摘要翻译:提供了一种制备用于储氢的过渡金属电镀多孔碳纳米纤维复合材料的方法。 具体地说,本发明的储氢用过渡金属电镀多孔碳纳米纤维复合体的制备方法包括将具有受控粒径和表面分散比的过渡金属电镀在比表面积为500〜3000的多孔碳纳米纤维上 m 2 / g,孔体积为0.1〜2.0cc / g,直径为10〜500nm。 随着储氢能力的提高,本发明提供的过渡金属电镀多孔碳纳米纤维复合材料可用作燃料电池,二次电池和超级电容器等电化学装置的电极活性材料的储氢介质。
摘要:
There is provided a method for preparation of a transition metal electroplated porous carbon nanofiber composite for hydrogen storage. Specifically, the preparation method of a transition metal electroplated porous carbon nanofiber composite for hydrogen storage according to the present invention comprises electroplating a transition metal with a controlled particle diameter and a surface dispersion ratio on a porous carbon nanofiber with specific surface area from 500 to 3000 m2/g, pore volume from 0.1 to 2.0 cc/g and diameter from 10 to 500 nm. With increased hydrogen storage capacity, the transition metal electroplated porous carbon nanofiber composite provided by the present invention can be utilized as hydrogen storage medium of active material for electrodes of electrochemical devices, such as fuel cell, secondary cell and supercapcitor.
摘要翻译:提供了一种制备用于储氢的过渡金属电镀多孔碳纳米纤维复合材料的方法。 具体地说,本发明的储氢用过渡金属电镀多孔碳纳米纤维复合体的制备方法包括将具有受控粒径和表面分散比的过渡金属电镀在比表面积为500〜3000的多孔碳纳米纤维上 m 2 / g,孔体积为0.1〜2.0cc / g,直径为10〜500nm。 随着储氢能力的提高,本发明提供的过渡金属电镀多孔碳纳米纤维复合材料可用作燃料电池,二次电池和超级电容器等电化学装置的电极活性材料的储氢介质。
摘要:
In a time data display mode, a time data is displayed in at least one display block partially assigned to a touch screen of an electronic device. After the touch gesture or the drag gesture is detected in one of the display block, the current time data in the display block can be replaced with a new time data according to the touch gesture or the drag gesture. The new time data may be a following time data or a previous time data which can be determined according to a location of the touch gesture, or a direction and a distance of the drag gesture. In addition, the extent of a change in the time data may be determined according to duration of the touch gesture or a speed of the drag gesture.
摘要:
A cleansing fabric and a method for manufacturing cleansing fabric wherein in the method, separative type ultrafine fiber and highly shrinkable polyester fiber are circular knitted or interlaced such that the highly shrinkable polyester fiber is interposed between the separative ultrafine fibers to obtain a three-layered knitted structure and subjecting the three-layered structure to dyeing. The separative type ultrafine fiber is obtained by conjugate spinning of hydrophilic nylon and lipophilic polyester.