This autobiography by an influential silent film star gives an insider’s view of the motion picture industry in the early twentieth century. It’s one of the most enduring images in film history: a young man in circular glasses, dangling from the hands of a clock high above Los Angeles. The actor performing this daring stunt was Harold Lloyd, a highly successful comedian from the silent film era. Lloyd made nearly two hundred comedies, both silent and “talkies,” between 1914 and 1947. He is best known for his “Glass” character, a bespectacled everyman who captured the mood of the 1920s. In this fascinating autobiography, which was written just around the time sound was revolutionizing cinema, Lloyd chronicles his experiences as a performer and producer of silent films, preserving firsthand details of Hollywood’s bygone period. This extraordinary memoir, originally published in 1928, discusses actors both comedic and dramatic, stage to film adaptations, producers, directors, and primarily, how early silent movies were made. It is a must-read for film historians and movie buffs alike.
Today, the fascinating story of colloidal quantum dots has no series finale yet. Instead, there continue to be advancements in our understanding of the fundamental properties of these nanocrystals, each of these advancements catalyzing a spin-off into a new journey toward potential applications. These remarkable advancements include improving the synthesis techniques, characterizing nanocrystals at the single-particle level, and tailoring their properties for specific applications. The quantum-confined colloidal semiconductor nanocrystals field has witnessed a remarkable convergence of nanoscience, materials chemistry, and spectroscopy, resulting in unprecedented control over their properties. With ongoing research efforts, the potential of semiconductor nanocrystals continues to unfold. Scientists are exploring new materials, developing scalable synthesis methods, and pushing the boundaries of their applications in fields such as quantum computing, energy storage, and biological sensing. The authors take the reader into quantum confinement and quantum dots. While the contents of this primer are rather expansive, they merely scratch the surface of the complex voyage that quantum dot sciences have undergone. The authors have identified vital terminology, valuable concepts, techniques, and applications.
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