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  <title>DEVELOPMENT OF HIGH POWER CONVERSION EFFICIENCY OF HYBRID POLYMER POLY (3-HEXILTHIOPHENE) ; ZINC OXIDE NANOPARTICLES SOLAR CELLS</title>
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 <name type="Personal Name" authority="">
  <namePart>Ayi Bahtiar</namePart>
  <role>
   <roleTerm type="text">Primary Author</roleTerm>
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 <name type="Personal Name" authority="">
  <namePart>Lusi Safriani</namePart>
  <role>
   <roleTerm type="text">Additional Author</roleTerm>
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  <namePart>Isao Watanabe</namePart>
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   <roleTerm type="text">Additional Author</roleTerm>
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  <namePart>Mariah  Kartawidjaja</namePart>
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  <place>
   <placeTerm type="text">Jatinangor</placeTerm>
   <publisher>Fakultas MIPA UNPAD</publisher>
   <dateIssued>2014</dateIssued>
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  <languageTerm type="text">Indonesia</languageTerm>
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  <extent>68 hlm, ill, ; 29 cm</extent>
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 <note>The ever increasing consumption and demand of electrical energy and depling  non-renewable energy resouces and disruptive due to greenhouse gases has aroused  much interest in renewable energy source . Solar cell  is an effective device for genarting electricity through solar energy conversion. Lots of researchers have paid effort to find best performance pf solar cells. Recently, semiconducting polymer havue been intensively studied and  developed as active material for solar cells because they can be easly prepare as thin films by use of simple technique, so that the cost-polymer solar cell production can be cheaper. However, the achived power conversion  efficiency  (PCE)  is  still lower than 15% which is the lower limit for mass production and wide application. Some strategies issues for improving PCE of solar cells  are using tandem solar cell, controlling morphology of active material and understanding charge carrier transport i active material of solar cells.</note>
 <note type="statement of responsibility">Ayi Bahtiar</note>
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  <topic>Fisika</topic>
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 <classification>530..598 24</classification>
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