カルシウム欠損アパタイトのステンレス基板上への電気化学的析出

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タイトル別名
  • Electrochemical Deposition of Calcium-Deficient Apatite on Stainless Steel Substrate
  • カルシウム ケッソン アパタイト ノ ステンレス キバンジョウ エ ノ デンキ

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The electrochemical deposition of calcium-deficient apatite on a stainless steel substrate was conducted by electrolyzing 0.02-0.21mol/dm3 Ca(H2PO4)2⋅H2O [MCP] solutions added with and without NaNO3 and NaF at a cathode current of 6mA/cm2 at 20-90°C. The formation of apatite from F--free MCP solutions was limited in a dilute MCP concentration region. At relatively high MCP concentrations brushite (CaHP4⋅2H2O) or monetite (CaHP4) was deposited. The addition of NaNO3 and/or NaF was effective for the formation of apatite. Deposited apatite layers were composed of ellipsoidal grains, needles or very fine granules depending on electrolysis conditions. Apatites deposited from F--added MCP solutions were calciumdeficient apatites with Ca/P molar ratios near 1.50, and contained F-, HPO42- and Na+ ions.

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