Abstract:
전해질을이용한마찰전기발생소자가개시된다. 전해질을이용한마찰전기발생소자는마찰물질층; 및상기마찰물질층으로떨어질수 있고, 전해질을포함하는전해질용액을포함하고, 상기마찰물질층은전극으로이용될수 있고, 상기전해질용액과상기마찰물질층이접촉하는경우에마찰전기가발생할수 있다.
Abstract:
The present invention relates to an electrostatic energy generating device with a high output manufactured by amplifying an electrical charge difference of a material due to friction and controlling electrostatic properties generated by the friction using electrical potential generated by the ferroelectric properties of the material. According to the present invention, An output is remarkably improved by constantly maintaining the output of the electrostatic energy generating device by amplifying the electrical charge difference of the material due to the friction and controlling the electrostatic properties generated by the friction using the electrical potential generated by the ferroelectric properties of the material.
Abstract:
PURPOSE: A producing method of a two dimensional zinc oxide nanosheet based nano electric power generation element is provided to produce high energy piezoelectric energy generation element which is mechanically stable using a two dimensional zinc oxide nanosheet. CONSTITUTION: A producing method of a two dimensional zinc oxide nanosheet based nano electric power generation element comprises the following steps: supplying a substrate with aluminum adhered to one side (S110); wet-growing a zinc oxide nanosheet on the side of the substrate with aluminum (S120); supplying a substrate with an electrode deposited on one side (S130); and attaching the substrate with the electrode on the zinc oxide nanosheet to contact the electrode deposited side with the zinc oxide nanosheet (S140). The wet-growing process comprises a step of preparing a growth solution, and a step of growing the substrate with aluminum inside the growth solution. [Reference numerals] (110) Prepare a substrate with aluminum adhered to one side; (120) Wet-grow a zinc oxide nanosheet on the side of the substrate; (130) Prepare a a substrate with an electrode deposited on one side; (140) Attach the substrate with the electrode on the zinc oxide nanosheet