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    • 4. 发明申请
    • INK SET FOR INK-JET RECORDING, POLYMERIZATION METHOD AND IMAGE FORMING METHOD
    • 用于墨水记录的墨盒,聚合方法和图像形成方法
    • US20070219292A1
    • 2007-09-20
    • US11575970
    • 2005-09-21
    • Kimihiko OokuboNorio MiuraTakeshi Kurata
    • Kimihiko OokuboNorio MiuraTakeshi Kurata
    • C09D11/00
    • C09D11/101
    • An ink set for ink-jet recording comprising a yellow ink composition for ink-jet recording containing one or more types of yellow color materials, a magenta ink composition for ink-jet recording containing one or more types of magenta color materials, and a cyan ink composition for ink-jet recording conditioning one or more types of cyan color materials, wherein each ink composition contains one or more of a) a compound having one or more polymerizable groups, b) an infrared absorbing agent, and c) a polymerization initiator, and further, the infrared absorbing agent contained in the yellow ink composition for ink-jet recording differs from the infrared absorbing agent contained in the cyan ink composition for ink-jet recording.
    • 一种用于喷墨记录的油墨组,包括用于喷墨记录的黄色油墨组合物,其包含一种或多种类型的黄色材料,用于喷墨记录的品红色油墨组合物,其含有一种或多种品红色材料,以及青色 用于喷墨记录调理一种或多种青色材料的油墨组合物,其中每种油墨组合物含有一种或多种a)具有一个或多个可聚合基团的化合物,b)红外吸收剂,和c)聚合引发剂 此外,用于喷墨记录的黄色油墨组合物中所含的红外线吸收剂与用于喷墨记录的青色油墨组合物中所含的红外线吸收剂不同。
    • 9. 发明授权
    • Method for obtaining a radiation image
    • 获得辐射图像的方法
    • US4889996A
    • 1989-12-26
    • US881522
    • 1986-06-30
    • Noboru KoteraShusaku EguchiNorio Miura
    • Noboru KoteraShusaku EguchiNorio Miura
    • C09K11/77
    • C09K11/7773C09K11/7705C09K11/7733C09K11/7791
    • A radiation image storage panel for obtaining a radiation image of an object by causing said panel to absorb a radiation transmitted through said object and then exposing the panel to light of wavelength ranging from 450 to 800 nm to cause the panel to release radiation energy stored therein as fluorescent light, said panel having a fluorescent layer of a rare earth element activated complex halide stimulable phosphor represented by the formulaBaF.sub.2.aBaX.sub.2.bMe.sup.I F.cMe.sup.II F.sub.2.dMe.sup.III F.sub.3 :eLnwherein X is at least one halogen selected from the group consisting of chlorine, bromine and iodine, Me.sup.I is at least one alkali metal selected from the group consisting of lithium and sodium, Me.sup.II is at least one divalent metal selected from the group consisting of beryllium, calcium and strontium, Me.sup.III is at least one trivalent metal selected from the group consisting of aluminum, gallium, yttrium and lanthanum, Ln is at least one rare earth element selected from the group consisting of divalent europium (Eu.sup.2+), cerium and terbium, and a, b, c, d and e are numbers satisfying the conditions of 0.90.ltoreq.a.ltoreq.1.05, 0.ltoreq.b.ltoreq.0.9, 0.ltoreq.c.ltoreq.1.2, 0.ltoreq.d.ltoreq.0.03, 10.sup.-6 .ltoreq.e.ltoreq.0.03 and b+d.noteq.0, respectively. A radiation image storage panel is produced by depositing on a support a fluorescent layer of the above-mentioned phosphor. The radiation image storage panel of this invention has higher sensitivity than the conventional radiation image storage panel having a phosphor layer of the conventional rare earth element activated divalent metal fluorohalide phosphor.