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国家/地区
中国(8)
IPC部
B(8)
IPC大类
B22(8)
IPC小类
B22F(8)
IPC
B22F009/24(8)
发明人
LIU Y(8)
公开年
2016(7)
申请年
2015(8)
专利权人
LIU Y(8)
Manufacture of graphene-nano nickel thermoelectric thin film involves washing copper substrate with acetone, deionized water and methanol, placing substrate in container including uniform graphene solution, and performing electrophoresis.
LIU Y
Manufacture of graphene-supported nano-nickel thermoelectric composite film involves mixing sulfonated graphite, triblock copolymer and ammonium acetate, adding nickel chloride, heating, forming membrane and performing electrophoresis.
LIU Y
Preparation of graphene-nano nickel thermoelectric thin film involves preparing wave-absorbing material from oxidized graphite, adding deionized water, and performing electrodeposition on copper substrate using obtained solution.
LIU Y
Preparation of graphene-loaded nano-nickel thermoelectric composite thin film involves preparing wave-absorbing material from oxidized graphite, adding to deionized water and electrodepositing obtained solution on copper substrate.
LIU Y
Preparation of graphene-loaded nano-nickel thermoelectric composite thin film involves preparing wave-absorbing material from oxidized graphite, adding to deionized water and electrodepositing obtained solution on copper substrate.
LIU Y
Preparation of graphene-loaded nano-nickel thermoelectric composite thin film involves preparing wave-absorbing material from oxidized graphite, adding to deionized water and electrodepositing obtained solution on copper substrate.
LIU Y
Graphene-supported nano-nickel thermoelectric thin-film is obtained by preparing wave-absorbing material using e.g. surface-treated graphite oxide, mixing with water and depositing resultant on processed copper substrate.
LIU Y
Graphene-nano nickel composite thermoelectric thin film is prepared by adding solution containing graphite oxide into container, immersing pre-treated copper plate as negative electrode and iron sheet as positive electrode and reacting.
LIU Y
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