会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Repair of nucleic acids for improved amplification
    • 修复核酸以改善扩增
    • US07700283B2
    • 2010-04-20
    • US11255290
    • 2005-10-20
    • Thomas C. EvansBarton SlatkoLixin ChenRomaldas VaisvilaChudi Guan
    • Thomas C. EvansBarton SlatkoLixin ChenRomaldas VaisvilaChudi Guan
    • C12Q1/68
    • C12Q1/686C12Q1/6844C12Q1/6848C12Q2521/501C12Q2521/301C12Q2521/514C12Q2521/101C12Q2521/331
    • Methods and compositions are provided for repairing a polynucleotide so that it can be synthesized efficiently with improved fidelity and yield in, for example, an amplification reaction. This involves the use of a reaction mixture that includes a ligase and a cofactor selected from NAD+ or ATP and incubating the polynucleotide with the reaction mixture in the absence of Endonuclease VI.The reaction mixture may further contain an AP endonuclease and a polymerase. These enzymes are optionally selected according to their ability to withstand high temperatures so they can be included in an amplification mixture. The reaction mixture may be used prior to a polynucleotide synthesis reaction in which case enzymes that are not thermophilic may be used. The repair reaction is not time sensitive with respect to seconds, minutes or hours of incubation in the enzyme mixture.
    • 提供了用于修复多核苷酸的方法和组合物,使得其可以在例如扩增反应中以提高的保真度和产率被有效地合成。 这包括使用包含连接酶和选自NAD +或ATP的辅因子并在不存在核酸内切酶VI的情况下将多核苷酸与反应混合物一起温育的反应混合物。 反应混合物还可以含有AP内切核酸酶和聚合酶。 这些酶根据其耐受高温的能力任选地进行选择,因此它们可以被包括在扩增混合物中。 反应混合物可以在多核苷酸合成反应之前使用,在这种情况下可以使用不是嗜热的酶。 相对于在酶混合物中孵育的秒,分钟或数小时,修复反应不是时间敏感的。
    • 7. 发明申请
    • Hydrogen storage container and mixture therein
    • 储氢容器及其中的混合物
    • US20060081483A1
    • 2006-04-20
    • US11250412
    • 2005-10-17
    • Changpin ChenLixin ChenQidong Wang
    • Changpin ChenLixin ChenQidong Wang
    • B65B3/00
    • B01D53/02B01D53/0415B01D2253/1126B01D2257/108B01D2258/01B01D2258/0208B01D2259/4143B01D2259/4525B01D2259/4541B01D2259/4566F17C11/005Y02E60/321
    • This invention relates to a new kind of hydrogen storage mixture and container thereof. This hydrogen storage container consists of a container casing, a hydrogen storage mixture and a valve. The hydrogen storage mixture loaded inside the container is made of hydrogen storage alloy granules and metal fibers and/or non-hydrogen-absorbing alloy fibers that do not absorb hydrogen. The non-hydrogen-absorbing fibers are dispersed among the hydrogen storage alloy granules and form a network structure. The non-hydrogen-absorbing fibers include non-hydrogen-absorbing metal fibers and/or non-hydrogen-absorbing alloy fibers, or their mixture. In the hydrogen storage mixture, the weight ratio of the non-hydrogen-absorbing fibers to the hydrogen storage alloys is about 0.01˜0.1. The hydrogen storage installation adopting the technology of this invention can effectively prevent the metal hydride granules from moving over a comparatively long distance and accumulating in some locations in the container during hydriding and dehydriding, and also can improve the thermal conductivity of the hydrogen storage mixture inside the container. The hydrogen storage container of this invention is easy to manufacture, safe to use, and low in cost. This invention can be used for the manufacture of hydrogen storage containers for hydrogen storage, transport, compression and purification.
    • 本发明涉及一种新型的储氢混合物及其容器。 该储氢容器由容器壳体,储氢混合物和阀组成。 装载在容器内的储氢混合物由储氢合金颗粒和不吸收氢的金属纤维和/或非吸氢合金纤维制成。 非吸氢纤维分散在储氢合金颗粒中并形成网络结构。 非吸氢纤维包括非吸氢金属纤维和/或非吸氢合金纤维或它们的混合物。 在储氢混合物中,非吸氢纤维与储氢合金的重量比为约0.01〜0.1。 采用本发明技术的氢存储装置可以有效地防止金属氢化物颗粒在氢化和脱氢过程中相对长的距离移动并积聚在容器中的某些位置,并且还可以提高储氢混合物内部的热导率 容器 本发明的储氢容器易于制造,使用安全,成本低。 本发明可用于制造用于储氢,运输,压缩和净化的储氢容器。
    • 8. 外观设计
    • Folding box
    • USD1007302S1
    • 2023-12-12
    • US29911086
    • 2023-08-29
    • Lixin Chen
    • Lixin Chen
    • FIG. 1 is a front, top perspective view of a first embodiment of a folding box, showing my new design;
      FIG. 2 is a rear, bottom perspective view thereof;
      FIG. 3 is a front elevation view thereof;
      FIG. 4 is a rear elevation view thereof
      FIG. 5 is a left side elevation view thereof;
      FIG. 6 is a right side elevation view thereof;
      FIG. 7 is a top plan view thereof;
      FIG. 8 is a bottom plan view thereof;
      FIG. 9 is an enlarged view of detail “9” identified in FIG. 1;
      FIG. 10 is another perspective view of the folding box, shown in an alternative position;
      FIG. 11 is a front, top perspective view of a second embodiment of the folding box;
      FIG. 12 is a rear, bottom perspective view thereof;
      FIG. 13 is a front elevation view thereof;
      FIG. 14 is a rear elevation view thereof;
      FIG. 15 is a left side elevation view thereof;
      FIG. 16 is a right side elevation view thereof;
      FIG. 17 is a top plan view thereof;
      FIG. 18 is a bottom plan view thereof;
      FIG. 19 is an enlarged view of detail “19” identified in FIG. 11; and,
      FIG. 20 is another perspective view of the folding box, shown in an alternative position.
      The dash dot dash lines in FIGS. 1, 9, 11 and 19 are for the purpose of illustrating the enlarged view indicators and form no part of the claimed design.