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    • 3. 发明申请
    • NONVOLATILE MEMORY DEVICE AND MEMORY SYSTEM INCLUDING THE SAME
    • 非易失性存储器件和包括其的存储器系统
    • US20130170297A1
    • 2013-07-04
    • US13619118
    • 2012-09-14
    • Sang-Wan NAMKyung-Hwa KANGJunghoon PARK
    • Sang-Wan NAMKyung-Hwa KANGJunghoon PARK
    • G11C16/04
    • G11C16/04G11C16/0483G11C16/08G11C16/10H01L27/115H01L27/11582
    • According to example embodiments, a nonvolatile memory device includes a first and a second NAND string. The first NAND string includes a first string selection transistor, a first local ground and a first global ground selection transistor, and first memory cells stacked in a direction perpendicular to a substrate. The second NAND string includes a second string selection transistor, a second local ground and a second global ground selection transistor, and second memory cells stacked in the direction perpendicular to the substrate. The device includes a selection line driver including path transistors configured to select and provide at least one operation voltage to the first and second string selection transistors, the first and second local and global ground selection transistors. The first and second string selection transistors are electrically isolated from each other, and the first and second global ground selection transistors are electrically connected.
    • 根据示例性实施例,非易失性存储器件包括第一和第二NAND串。 第一NAND串包括第一串选择晶体管,第一局部地和第一全局接地选择晶体管,以及沿垂直于衬底的方向堆叠的第一存储单元。 第二NAND串包括第二串选择晶体管,第二局部地和第二全局接地选择晶体管,以及沿与基板垂直的方向堆叠的第二存储单元。 该器件包括选择线驱动器,其包括被配置为选择并向第一和第二串选择晶体管,第一和第二局部和全局地选择晶体管提供至少一个操作电压的路径晶体管。 第一和第二串选择晶体管彼此电绝缘,并且第一和第二全局接地选择晶体管电连接。
    • 9. 发明授权
    • Method of preparation of a catalyst for acrolein oxidation
    • 制备丙烯醛氧化催化剂的方法
    • US06171998B2
    • 2001-01-09
    • US09158877
    • 1998-09-23
    • Won-Ho LeeKyung-Hwa KangDong-Hyun KoYoung-Chang Byun
    • Won-Ho LeeKyung-Hwa KangDong-Hyun KoYoung-Chang Byun
    • B01J2300
    • B01J37/0036B01J23/8885B01J37/0232
    • Disclosed is a method of producing a carrier catalyst for a use in acrolein oxidation reaction. Metallic salt components of the catalyst including molybdate, vanadate and tungstate are dissolved in water. An additional metallic salt component of the catalyst is added to the aqueous solution of the salts to form a suspension of the catalyst. In the suspension, the total weight of water is about 0.8 to about 5 times of the total weight of the metallic salts in the catalyst. This method of preparing suspension minimizes the amount of water required to dissolve the metallic salts, which reduces the amount of time and energy to be used in evaporating water from the suspension in the following step of obtaining catalyst. Additionally, in obtaining catalyst from the suspension prepared by this method, it is possible to avoid the deterioration of the catalytic performance since less heat is required to evaporate the water. Disclosed also is a method of producing a carrier-retained catalyst. Catalyst particles suspended in the water are split or ground into smaller particles to maintain homogeneous suspension. The suspension is sprayed to an inert carrier while applying heated air flow to remove water and obtain a carrier-retained catalyst.
    • 公开了一种制备用于丙烯醛氧化反应的载体催化剂的方法。 包括钼酸盐,钒酸盐和钨酸盐在内的催化剂的金属盐组分溶解在水中。 将催化剂的另外的金属盐组分加入到盐的水溶液中以形成催化剂的悬浮液。 在悬浮液中,水的总重量为催化剂中金属盐总重量的约0.8至约5倍。 这种制备悬浮液的方法使溶解金属盐所需的水量最小化,这减少了在获得催化剂的后续步骤中从悬浮液蒸发水中使用的时间和能量的量。 此外,在从通过该方法制备的悬浮液中获得催化剂的情况下,可以避免催化性能的劣化,因为需要较少的热量来蒸发水。 还公开了制备载体保留催化剂的方法。 悬浮在水中的催化剂颗粒被分裂或研磨成更小的颗粒以保持均匀的悬浮液。 将悬浮液喷雾到惰性载体上,同时施加加热的空气流以除去水并获得载体保留的催化剂。