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- W2135409868 abstract "Nanostructured amorphous carbon (a-C) solar cells were successfully deposited via a self-designed aerosol-assisted chemical vapor deposition (AACVD). The fabricated solar cell with the configuration of Au/p-C/n-Si/Au achieved efficiency (<svg style=vertical-align:-3.56265pt;width:8.5249996px; id=M1 height=12.175 version=1.1 viewBox=0 0 8.5249996 12.175 width=8.5249996 xmlns:xlink=http://www.w3.org/1999/xlink xmlns=http://www.w3.org/2000/svg> <g transform=matrix(.017,-0,0,-.017,.062,7.675)><path id=x1D702 d=M471 401q0 -32 -14 -91l-83 -376q-30 -146 -21 -180l-7 -15q-22 0 -47.5 23.5t-25.5 40.5q0 49 53 271l53 224q4 18 6.5 31t3.5 22.5t1 15t-2 9t-4.5 4.5t-6.5 1q-31 0 -100.5 -63.5t-126.5 -145.5q-16 -53 -40 -163q-48 -11 -74 -21l-7 8l82 341q9 36 -4 36
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q0 -76 10 -138.5t37 -107.5t69 -45q32 0 55.5 25t35.5 68.5t17.5 91.5t5.5 105t-5.5 105.5t-18 92t-36 68t-56.5 24.5z /></g> <g transform=matrix(.012,-0,0,-.012,62.262,7.587)><path id=x2212 d=M535 230h-483v50h483v-50z /></g><g transform=matrix(.012,-0,0,-.012,69.247,7.587)><path id=x34 d=M456 178h-96v-72q0 -51 12.5 -62.5t72.5 -16.5v-27h-256v27q65 5 78 17t13 62v72h-260v28q182 271 300 426h40v-407h96v-47zM280 225v295h-2q-107 -148 -196 -295h198z /></g> </svg>% for device deposited at 500°C, <svg style=vertical-align:-0.1638pt;width:75.650002px; id=M3 height=16.012501 version=1.1 viewBox=0 0 75.650002 16.012501 width=75.650002 xmlns:xlink=http://www.w3.org/1999/xlink xmlns=http://www.w3.org/2000/svg> <g transform=matrix(.017,-0,0,-.017,.062,15.738)><use xlink:href=#x31/></g><g transform=matrix(.017,-0,0,-.017,8.222,15.738)><use xlink:href=#x2E/></g><g transform=matrix(.017,-0,0,-.017,12.098,15.738)><use xlink:href=#x32/></g><g transform=matrix(.017,-0,0,-.017,20.257,15.738)><use xlink:href=#x34/></g><g transform=matrix(.017,-0,0,-.017,32.19,15.738)><use xlink:href=#xD7/></g><g transform=matrix(.017,-0,0,-.017,45.942,15.738)><use xlink:href=#x31/></g><g transform=matrix(.017,-0,0,-.017,54.102,15.738)><use xlink:href=#x30/></g> <g transform=matrix(.012,-0,0,-.012,62.262,7.587)><use xlink:href=#x2212/></g><g transform=matrix(.012,-0,0,-.012,69.247,7.587)><use xlink:href=#x34/></g> </svg>% for 450°C, and <svg style=vertical-align:-0.1638pt;width:75.650002px; id=M4 height=16.012501 version=1.1 viewBox=0 0 75.650002 16.012501 width=75.650002 xmlns:xlink=http://www.w3.org/1999/xlink xmlns=http://www.w3.org/2000/svg> <g transform=matrix(.017,-0,0,-.017,.062,15.738)><use xlink:href=#x30/></g><g transform=matrix(.017,-0,0,-.017,8.222,15.738)><use xlink:href=#x2E/></g><g transform=matrix(.017,-0,0,-.017,12.098,15.738)><use xlink:href=#x30/></g><g transform=matrix(.017,-0,0,-.017,20.257,15.738)><path id=x33 d=M285 378v-2q65 -13 102 -54.5t37 -97.5q0 -57 -30.5 -104.5t-74 -75t-85.5 -42t-72 -14.5q-31 0 -59.5 11t-40.5 23q-19 18 -16 36q1 16 23 33q13 10 24 0q58 -51 124 -51q55 0 88 40t33 112q0 64 -39 96.5t-88 32.5q-29 0 -64 -11l-6 29q77 25 118 57.5t41 84.5
q0 45 -26.5 69.5t-68.5 24.5q-67 0 -120 -79l-20 20l43 63q51 56 127 56h1q66 0 107 -37t41 -95q0 -42 -31 -71q-22 -23 -68 -54z /></g><g transform=matrix(.017,-0,0,-.017,32.19,15.738)><use xlink:href=#xD7/></g><g transform=matrix(.017,-0,0,-.017,45.942,15.738)><use xlink:href=#x31/></g><g transform=matrix(.017,-0,0,-.017,54.102,15.738)><use xlink:href=#x30/></g> <g transform=matrix(.012,-0,0,-.012,62.262,7.587)><use xlink:href=#x2212/></g><g transform=matrix(.012,-0,0,-.012,69.247,7.587)><use xlink:href=#x34/></g> </svg>% for 400°C. Photoresponse characteristic was highlighted under illumination (AM 1.5 illuminations: 100 mW/cm<sup >2</sup>, 25°C), where conductivity increased when the sample was being hit by light. Transmittance spectrum exhibits a large transmittance value (<svg style=vertical-align:-0.04095pt;width:10.1px; id=M5 height=8.9125004 version=1.1 viewBox=0 0 10.1 8.9125004 width=10.1 xmlns:xlink=http://www.w3.org/1999/xlink xmlns=http://www.w3.org/2000/svg> <g transform=matrix(.017,-0,0,-.017,.062,8.8)><path id=x3E d=M512 230l-437 -233v58l378 199v2l-378 200v58l437 -233v-51z /></g> </svg>85%) and absorption coefficient value of <svg style=vertical-align:-0.1638pt;width:22.775px; id=M6 height=16.012501 version=1.1 viewBox=0 0 22.775 16.012501 width=22.775 xmlns:xlink=http://www.w3.org/1999/xlink xmlns=http://www.w3.org/2000/svg> <g transform=matrix(.017,-0,0,-.017,.062,15.738)><use xlink:href=#x31/></g><g transform=matrix(.017,-0,0,-.017,8.222,15.738)><use xlink:href=#x30/></g> <g transform=matrix(.012,-0,0,-.012,16.375,7.587)><use xlink:href=#x34/></g> </svg> cm<sup >−1</sup> at the visible range from 390 to 790 nm. The nanostructured a-C thin film deposited at higher temperature possesses lower transmittance due to higher absorption as a result of the higher content of sp<sup >2</sup>-bonded carbon atoms. From Tauc’s plot, optical band gap (<svg style=vertical-align:-5.76988pt;width:18.262501px; id=M7 height=18.362499 version=1.1 viewBox=0 0 18.262501 18.362499 width=18.262501 xmlns:xlink=http://www.w3.org/1999/xlink xmlns=http://www.w3.org/2000/svg> <g transform=matrix(.017,-0,0,-.017,.062,11.113)><path id=x1D438 d=M609 650l-19 -162l-30 -2q2 69 -14 94q-9 18 -28.5 26t-74.5 8h-88q-30 0 -37 -6.5t-12 -36.5l-41 -212h103q48 0 69 5.5t32 19t26 50.5h29l-40 -198h-30q2 58 -11.5 70.5t-85.5 12.5h-99l-30 -167q-17 -87 3 -101q18 -15 111 -15q59 0 89 7t54 27q8 7 15.5 16t16 21.5
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- W2135409868 date "2013-01-01" @default.
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- W2135409868 title "New Method of Depositing the Nanostructured Amorphous Carbon for Carbon Based Solar Cell Applications" @default.
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- W2135409868 doi "https://doi.org/10.1155/2013/784743" @default.
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