Matches in SemOpenAlex for { <https://semopenalex.org/work/W4382136253> ?p ?o ?g. }
- W4382136253 endingPage "266" @default.
- W4382136253 startingPage "266" @default.
- W4382136253 abstract "Nanostructured metal sulfides such as copper sulfide (CUS) form from single-source precursors (SSPs) and are cost-friendly materials that can be used in a one-pot approach with potential applications in dye-sensitizer solar cells (DSCs). This is an attractive pathway that allows the careful control of tailoring the design of the nanostructures with slight variations in the mixture conditions to form uniform nanoparticles and enhance the performance of DSCs. We report on the optical, structural, and morphological properties of CuS as photosensitizers and their application in QDSCs using characterization techniques such as cyclic voltammetry (CV), current–voltage (I-V), UV-Vis spectroscopy (UV-Vis), X-ray diffraction (XRD), high-resolution transmission electron microscopy (HRTEM), etc. The UV-Vis reveals that the band gap for the three samples is found at 2.05–2.87 eV, confirming them as suitable materials for solar cells. The XRD peaks for the three CuS nanoparticles harmonized very well with hexagonal CuS. The thermal gravimetric (TGA) suitability of the three complexes shows a two-step decomposition within the temperature range of 125–716 °C, with a final residue of 2–4%. CV curves for three samples show that none of the developed metal sulfides exhibits a peak indicative of limited catalytic activity in the iodine electrolyte. The I-V overall energy conversion efficiency (η%) of 4.63% for the CuSb photosensitizer is linked to the wide electronic absorption spectrum and better relative dye loading. The synthesis of photosensitizers from a trioctylphosphine oxide (TOPO) capping agent shows improved efficiency compared to our previous studies, which used hexadecylamine as a coordinating solvent." @default.
- W4382136253 created "2023-06-27" @default.
- W4382136253 creator A5015854569 @default.
- W4382136253 creator A5069795763 @default.
- W4382136253 date "2023-06-24" @default.
- W4382136253 modified "2023-10-14" @default.
- W4382136253 title "Influence of a One-Pot Approach on a Prepared CuS Macro/Nanostructure from Various Molecular Precursors" @default.
- W4382136253 cites W1768442093 @default.
- W4382136253 cites W1788502066 @default.
- W4382136253 cites W1926389144 @default.
- W4382136253 cites W1957860661 @default.
- W4382136253 cites W1972045821 @default.
- W4382136253 cites W1973303647 @default.
- W4382136253 cites W1988065731 @default.
- W4382136253 cites W1994829790 @default.
- W4382136253 cites W2002687079 @default.
- W4382136253 cites W2003535953 @default.
- W4382136253 cites W2006968088 @default.
- W4382136253 cites W2011749089 @default.
- W4382136253 cites W2014530591 @default.
- W4382136253 cites W2018928880 @default.
- W4382136253 cites W2022195827 @default.
- W4382136253 cites W2023401918 @default.
- W4382136253 cites W2027674973 @default.
- W4382136253 cites W2029437187 @default.
- W4382136253 cites W2034405057 @default.
- W4382136253 cites W2048316708 @default.
- W4382136253 cites W2049981795 @default.
- W4382136253 cites W2078979611 @default.
- W4382136253 cites W2092988307 @default.
- W4382136253 cites W2134515074 @default.
- W4382136253 cites W2171051300 @default.
- W4382136253 cites W2193274596 @default.
- W4382136253 cites W2304276924 @default.
- W4382136253 cites W2405780929 @default.
- W4382136253 cites W2487221507 @default.
- W4382136253 cites W2528341497 @default.
- W4382136253 cites W2548350676 @default.
- W4382136253 cites W2564703817 @default.
- W4382136253 cites W2565442833 @default.
- W4382136253 cites W2594987570 @default.
- W4382136253 cites W2623348629 @default.
- W4382136253 cites W2625951487 @default.
- W4382136253 cites W2626182243 @default.
- W4382136253 cites W2753093486 @default.
- W4382136253 cites W2784823868 @default.
- W4382136253 cites W2786104668 @default.
- W4382136253 cites W2804870429 @default.
- W4382136253 cites W2886403719 @default.
- W4382136253 cites W2895940424 @default.
- W4382136253 cites W2896352043 @default.
- W4382136253 cites W2899694286 @default.
- W4382136253 cites W2901476817 @default.
- W4382136253 cites W2906491837 @default.
- W4382136253 cites W2944153024 @default.
- W4382136253 cites W2946073570 @default.
- W4382136253 cites W2962136290 @default.
- W4382136253 cites W2966540787 @default.
- W4382136253 cites W3010560731 @default.
- W4382136253 cites W3015252026 @default.
- W4382136253 cites W3039651289 @default.
- W4382136253 cites W3106043251 @default.
- W4382136253 cites W3111904944 @default.
- W4382136253 cites W3121260225 @default.
- W4382136253 cites W3165443265 @default.
- W4382136253 cites W3186986509 @default.
- W4382136253 cites W3189342965 @default.
- W4382136253 cites W3202082386 @default.
- W4382136253 cites W3207100815 @default.
- W4382136253 cites W4205401113 @default.
- W4382136253 cites W4206536179 @default.
- W4382136253 cites W4220834492 @default.
- W4382136253 cites W4220995230 @default.
- W4382136253 cites W4281610000 @default.
- W4382136253 cites W4283066634 @default.
- W4382136253 cites W4283387901 @default.
- W4382136253 cites W4286786919 @default.
- W4382136253 cites W4288808559 @default.
- W4382136253 cites W4297524039 @default.
- W4382136253 cites W4303958929 @default.
- W4382136253 cites W4310128757 @default.
- W4382136253 cites W4311092578 @default.
- W4382136253 cites W4313581108 @default.
- W4382136253 cites W4318042016 @default.
- W4382136253 cites W4353096271 @default.
- W4382136253 doi "https://doi.org/10.3390/inorganics11070266" @default.
- W4382136253 hasPublicationYear "2023" @default.
- W4382136253 type Work @default.
- W4382136253 citedByCount "0" @default.
- W4382136253 crossrefType "journal-article" @default.
- W4382136253 hasAuthorship W4382136253A5015854569 @default.
- W4382136253 hasAuthorship W4382136253A5069795763 @default.
- W4382136253 hasBestOaLocation W43821362531 @default.
- W4382136253 hasConcept C127413603 @default.
- W4382136253 hasConcept C146088050 @default.
- W4382136253 hasConcept C147789679 @default.
- W4382136253 hasConcept C155672457 @default.
- W4382136253 hasConcept C160434732 @default.