“…Among these novel techniques, the synthesis and application of In 2 O 3 NC thin films by using the spin-coating method have garnered substantial attention due to their unique physical properties and exceptional technological significance when compared to similar systems. [34][35][36] In this introduction, we will explore the compelling advantages of the spin-coating film preparation techniques over conventional methods and delve into the distinct physical properties that make In 2 O 3 NC thin films a highly promising material. The conventional techniques for thin film preparation have long served as the foundation for numerous technological applications.…”
The effect of annealing temperature and capping ligands on the electron mobility and electronic structure of indium oxide (In2O3) nanocrystals (NCs) was investigated using oleic acid (OA), benzoic acid (BA), and 4-aminobenzoic acid (4ABA).
“…Among these novel techniques, the synthesis and application of In 2 O 3 NC thin films by using the spin-coating method have garnered substantial attention due to their unique physical properties and exceptional technological significance when compared to similar systems. [34][35][36] In this introduction, we will explore the compelling advantages of the spin-coating film preparation techniques over conventional methods and delve into the distinct physical properties that make In 2 O 3 NC thin films a highly promising material. The conventional techniques for thin film preparation have long served as the foundation for numerous technological applications.…”
The effect of annealing temperature and capping ligands on the electron mobility and electronic structure of indium oxide (In2O3) nanocrystals (NCs) was investigated using oleic acid (OA), benzoic acid (BA), and 4-aminobenzoic acid (4ABA).
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