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Synthetic, single crystal, n-type semiconducting WS//2 (bandgap approximately equals 1. 3 eV) has been characterized as a photoanode in aqueous and nonaqueous electrolyte media. The WS//2 was synthesized from the elements by bromine and chlorine transport to yield plates up to 3 multiplied by 3 mm in dimension. Interface characterization includes (i) cyclic voltammetry in the presence of a large number of fast, one-electron redox couples in CH//3CN/0. 1M left bracket eta -Bu//4N right bracket ClO//4 solutions; (ii) steady-state photocurrent-voltage properties in aqueous and nonaqueous solutions of X** minus (X** minus equals Cl** minus , Br** minus , I** minus ); (iii) tests of durability; (iv) wavelength dependence of photocurrent and photovoltage; and (v) high resolution (approximately 5 mu m) laser mapping of the surface to reveal surface inhomogeneity with respect to output photovoltage.
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