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A tissue implantable fuel cell power supply.
A tissue implantable fuel cell power supply.
In 1964 yahiro proposed fuel cells as a power supply for implantable medical devices.
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A novelty is the application of binder less platinum electrodes for both anode and cathode.
This chapter provides readers from different disciplines with an overview of the technology and state of the art in implantable biofuel cells as power source for implantable systems.
Biomaterials medical devices and artificial organs.
Trans am soc artif intern organs.
A sustainable fuel cell power supply for medical implants.
Still fuel cell research in medical field went temporarily into the trough due to the successful integration of.
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Drake rf kusserow bk messinger s matsuda s.
This would be sufficient to power a 30 μw pacemaker with a cell surface area of 10 cm 2.
Glucose fuel cell intended as tissue implantable power supply for medical implants.
At that time the majority of the fuel cell studies focused on the use of glucose and oxygen as reactants and biological enzyme as the catalyst.
Animal experiments with biogalvanic and biofuel cells.
This overcomes the limited chemical stability of glucose fuel cells fabricated from activated carbon particles dispersed in a hydrogel matrix.
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Weidlich e richter g von sturm f rao jr.
A sustainable fuel cell power supply for medical implants implantable glucose fuel cells employing abiotic catalyst e g.
Transactions of the american society for artificial internal organs asaio journal 1970.
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We present an improved abiotically catalyzed glucose fuel cell intended as tissue implantable power supply for medical implants.
A tissue implantable fuel cell power supply.
A novelty is the application of binder less platinum electrodes for both anode and cathode.
Our current one compartment direct glucose fuel cell achieves a power density of 3 5 μw cm 2.
Home april 1970 volume 16 issue 1 a tissue implantable fuel cell power supply previous abstract.
With this concept electricity is directly generated.
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