edited abstract

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ABSTRACT In this paper the use of self-rechargeble paper thin film batteries, their performance and applications has been presented. The Glucose activated paper battery based on glucose oxidised enzyme using a simple and cheap plastic laminating technology has been demonstrated. The enzyme and glucose concentration can be optimized to gear up the power requirement. Ultra fast all polymer paper based batteries are an option with some short comings yet such as low cycling stabilities and functional discharge rate. Also integration secondary battery with the paper battery is also shown to improve the power. XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX

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Page 1: Edited Abstract

ABSTRACT

In this paper the use of self-rechargeble paper thin film batteries, their performance and

applications has been presented. The Glucose activated paper battery based on glucose oxidised

enzyme using a simple and cheap plastic laminating technology has been demonstrated. The

enzyme and glucose concentration can be optimized to gear up the power requirement. Ultra fast

all polymer paper based batteries are an option with some short comings yet such as low cycling

stabilities and functional discharge rate. Also integration secondary battery with the paper battery

is also shown to improve the power.

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Page 2: Edited Abstract

CONTENTS CHAPTERS PAGE NO 1 INTRODUCTION……………………………………..

…………………………6 2 LITERATURE

SURVEY....................................................................................7 2.1 Literature

Survey............................................................................................7 2.2

Objectives......................................................................................................7 3 PAPER

BATTERY………………………………………………………………8 3.1 Glucose activated Laminated

Battery……………………………………….9 3.2 Polymer based paper

battery……………………………………..…………11 3.3 Li-ion paper

battery…………………………………………..…………….13. 4 FABRICATION METHODS

………………………………….………………17.. 4.1 Doctor blade

process……………………………………….………………17 4.2

Lamination……………………………………………..…………………..18 5

DURABILITY………………………………………………………………….19 6

USE………………………………………………..……………………………20 7

CONCLUSION…………………………………………………………………21

REFERENCES

Page 3: Edited Abstract