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Titlebook: Disordered Materials; Science and Technolo David Adler,Brian B. Schwartz,Marvin Silver Book 1991 Plenum Press, New York 1991 adsorption.cer

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https://doi.org/10.1007/978-3-642-99356-5conductivity by many orders of magnitude. Such doping is the basis of the crystalline semiconducting industry and has recently been extended to amorphous silicon and germanium, with hydrogen appearing to play an important compensating role.(1–3)
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https://doi.org/10.1007/978-3-658-41667-6erations in single-crystal materials, and for physical reasons such as grain boundaries in poly-crystalline materials. Amorphous semiconductors are especially attractive in this regard because they are basically much less expensive than their crystalline counterparts and because they possess a direc
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https://doi.org/10.1007/978-94-6209-161-0hous tetrahedral semiconductors ordinarily possess a very large density of states which act as traps leading to low values for drift mobility and low recombination lifetimes of free carriers. However, Spear and his group (8–10) reported that a-Si decomposed from SiH. gas by r.f. glow discharge and d
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Raoul Klingner,Tobias Zimmermannts. It is multi-elemental and includes hydrogen and can also include other elements such as oxygen without deleterious effects. This Si: F: H alloy, prepared by the glow-discharge decomposition of SiF. mixed with hydrogen, has been reported to overcome a number of problems of . and .: H. The .: F: H
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