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Trisilane is a chemical substance with a molecular structure consisting of three silicon atoms and a chemical formula of Si3H8. At room temperature and pressure, propylsilane appears as a colorless and easily self igniting liquid. It was discovered by Carol Bosky and Alfred Stoke in 1916. It is worth noting that since Trilane does not contain carbon, it is not an organic compound. Its main uses are semiconductor silicon film manufacturing and amorphous silicon manufacturing.
Germane is an inorganic compound with the chemical formula GeH4. It is a colorless gas at room temperature and pressure, stable at room temperature. It begins to decompose at around 280 ℃ and almost completely decomposes into elements Ge and H2 at around 350 ℃. It can burn in the air and emit a blue red flame during combustion, but the degree of combustion is not as intense as that of silane. Mixtures with oxygen or air are prone to explosion. React with alkali metals in liquid ammonia at room temperature. Germanide has strong self catalytic activity, and once it decomposes to form a metal coating, it will rapidly decompose. Therefore, the surface of materials such as piping must be smooth. Insoluble in water, but soluble in hypochlorous acid, slightly soluble in hot concentrated sulfuric acid. Can be decomposed by nitric acid. Can be used to produce high-purity germanium.
Deuterium gas has a wide range of applications, not only in nuclear energy, controllable nuclear fusion reactions, lasers, light bulbs, experimental research, semiconductor material toughening, nuclear medicine and agriculture, but also in military applications, such as manufacturing hydrogen bombs, neutron bombs, and DF laser weapons.

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