LEADER 01129nam0-22003371i-450- 001 990001314220403321 010 $a0-387-97271-4 035 $a000131422 035 $aFED01000131422 035 $a(Aleph)000131422FED01 035 $a000131422 100 $a20000920d1990----km-y0itay50------ba 101 0 $aeng 200 1 $aModern Geometry$eMethods and Applications$fB.A. Dubrovin, A. T. Fomenko, S. P. Novikov 210 $aNew York [etc.]$cSpringer-Verlag$d1990 215 $aIX, 416 p.$cill., 25 cm 225 1 $aGraduate texts in mathematics$v124 300 $aTranslated from original russian editon by Robert G. Burns. With 120 illustrations. Part III. Introduction to Homology Theory 610 0 $aGeometria$aMetodi e applicazioni 676 $a516 700 1$aDubrovin,$bBoris A.$052477 702 1$aFomenko,$bAnatolij Timofeevic$f<1945- > 702 1$aNovikov,$bSergej Petrovich$f<1938- > 801 0$aIT$bUNINA$gRICA$2UNIMARC 901 $aBK 912 $a990001314220403321 952 $aC-12-(124$b7697$fMA1 959 $aMA1 996 $aModern Geometry$9382762 997 $aUNINA DB $aING01 LEADER 03604nam 2200973z- 450 001 9910557411203321 005 20210501 035 $a(CKB)5400000000043564 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/68989 035 $a(oapen)doab68989 035 $a(EXLCZ)995400000000043564 100 $a20202105d2020 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aAdvanced Thin Film Materials for Photovoltaic Applications 210 $aBasel, Switzerland$cMDPI - Multidisciplinary Digital Publishing Institute$d2020 215 $a1 online resource (148 p.) 311 08$a3-03943-040-8 311 08$a3-03943-041-6 330 $aThe direct conversion of sunlight into electricity (photovoltaic or PV for short) is evolving rapidly, and is a technology becoming a mainstream clean energy production method. However, to compete with conventional energy production methods using fossil fuels, the conversion efficiency needs to be increased, and the manufacturing cost should be reduced further. Both of these require the improvement of solar energy materials, and the device architectures used for the conversion of light into electrical energy. This Special Issue presents the latest developments in some solar energy materials like Si, CdTe, CIGS, SnS and Perovskites), and the device structures suitable for next generation solar cells. In particular, the progress in graded bandgap multi-layer solar cells are presented in this Special Issue. 606 $aHistory of engineering and technology$2bicssc 610 $aabsorber 610 $aanti-reflection coating 610 $abuffer 610 $aCdS 610 $aCdS/CdTe 610 $aCdSe 610 $aCdTe 610 $aCdTe film 610 $aCdTe1?xSex 610 $acharacterisation 610 $achemical solution process 610 $aCIGS 610 $aCu(In,Ga)Se2 610 $aelectrodeposition 610 $aelectroplating 610 $aelectroplating of semiconductors 610 $aelectroplating temperature 610 $aencapsulation 610 $aethlammonium 610 $aformamidinium 610 $ahole blocking layer 610 $alarge-area electronics 610 $aluminescence 610 $amicrostructure 610 $amini-module 610 $anumerical simulation 610 $aorganic solar cells 610 $aP1 shunt 610 $aperovskite 610 $aperovskite solar cell 610 $aperovskite solar cells 610 $aphotovoltaic 610 $aphotovoltaics 610 $aplasma enhanced chemical vapor deposition 610 $apotential-induced degradation 610 $arenewable energy 610 $areview 610 $asemiconductors 610 $asilicon 610 $aSnS/SnS2 610 $asolar cell 610 $asolar cells 610 $asolution spin-coating 610 $aspace charge region (SCR) 610 $aspectroscopy 610 $astability 610 $aTCAD 610 $athin films 610 $atin disulfide 610 $atin monosulfide 610 $aTiO2/SnO2 layer 610 $atransistor effect 610 $atwo-electrode configuration 615 7$aHistory of engineering and technology 700 $aDharmadasa$b I. M$4edt$01319384 702 $aDharmadasa$b I. M$4oth 906 $aBOOK 912 $a9910557411203321 996 $aAdvanced Thin Film Materials for Photovoltaic Applications$93033857 997 $aUNINA