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007 cr |||||||||||
008 191129t20202020nju ob 001 0 eng
010 _a 2019024550
040 _aDLC
_beng
_erda
_epn
_cDLC
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_dOCLCQ
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015 _aGBC044699
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016 7 _a019598675
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019 _a1132386270
020 _a1119557380
_q(adobe electronic book)
020 _a9781119557401
_q(electronic book)
020 _a1119557402
_q(electronic book)
020 _a9781119557388
_q(electronic bk.)
020 _a9781119557395
_q(electronic publication)
020 _a1119557399
_q(electronic publication)
020 _z1119557399
020 _z9781119557333
_q(hardcover)
029 1 _aAU@
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029 1 _aCHNEW
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029 1 _aCHVBK
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029 1 _aUKMGB
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035 _a(OCoLC)1127227560
_z(OCoLC)1132386270
037 _a9781119557395
_bWiley
042 _apcc
050 4 _aTK2963.D94
_bI68 2020
072 7 _aTEC
_x021040
_2bisacsh
082 0 0 _a621.31/244
_223
049 _aMAIN
245 0 0 _aInterfacial engineering in functional materials for dye-sensitized solar cells /
_cedited by Alagarsamy Pandikumar, Kandasamy Jothivenkatachalam, Karuppanapillai B. Bhojanaa.
250 _aFirst edition.
264 1 _aHoboken, NJ, USA :
_bWiley,
_c2020.
264 4 _c©2020
300 _a1 online resource (xvi, 270 pages)
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bn
_2rdamedia
338 _aonline resource
_bnc
_2rdacarrier
504 _aIncludes bibliographical references and index.
505 0 _aDye-senitized solar cells : history, components, configuration and working principle -- Function of photoanode : charge transfer dynamics, challenges and alternative strategies -- Nanoarchitectures as photoanodes -- Light scattering materials as photoanode -- Function of compact (blocking) layer in photoanode -- Function of TiCl4 post-treatment in photoanode -- Doped semiconductor as photoanode -- Binary semiconductor metal oxide as photoanodes -- Plasmonic nanocomposite as photoanode -- Carbon nanotubes-based nanocomposite as photoanode -- Graphene based nanocomposite as photoanode -- Graphitic carbon nitride based nanocomposites as photoanodes.
520 _a"Solar energy has paved the way as an alternative to fossil fuels for present and future energy demands. Dye-sensitized solar cells (DSSC) are one of the most promising techniques to harvest solar energy and convert it into electrical energy because of their ease of production, low cost, flexibility, relatively high conversion efficiency, and low toxicity to the environment. DSSCs consist of components such as electrolytes, dyes, counter electrodes, and photoanodes. Among these, the photoanode plays a vital role and serves as the support for dye molecules and transport photo-excited electrons"--
_cProvided by publisher.
588 0 _aPrint version record and CIP data provided by publisher; resource not viewed.
650 0 _aDye-sensitized solar cells.
_97801
650 0 _aInterfaces (Physical sciences)
_96167
650 7 _aSolar cells.
_2fast
_0(OCoLC)fst01124932
_95122
655 4 _aElectronic books.
_93294
700 1 _aPandikumar, Alagarsamy,
_eeditor.
_98846
700 1 _aJothivenkatachalam, Kandasamy,
_d1973-
_eeditor.
_98847
700 1 _aBhojanaa, Karuppanapillai B.,
_d1995-
_eeditor.
_98848
776 0 8 _iPrint version:
_tInterfacial engineering in functional materials for dye-sensitized solar cells.
_bFirst edition.
_dHoboken, NJ : Wiley, [2019]
_z9781119557333
_w(DLC) 2019024549
856 4 0 _uhttps://doi.org/10.1002/9781119557401
_zWiley Online Library
942 _cEBK
994 _aC0
_bDG1
999 _c69216
_d69216