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    • 2. 发明授权
    • Mercaptoalkylsilatrane derivative having protecting group and method of manufacturing the same
    • 具有保护基的巯基烷基硅烷衍生物及其制造方法
    • US09096620B2
    • 2015-08-04
    • US14195367
    • 2014-03-03
    • National Chung Cheng University
    • Wen-Hao ChenLai-Kwan ChauChao-Wen ChenYen-Ta Tseng
    • C07F7/02C07F7/18
    • C07F7/1804Y02P20/55
    • A mercaptoalkylsilatrane derivative having protecting group and a method of manufacturing the same. The mercaptoalkylsilatrane derivative includes: mercaptoalkylsilatrane compound having a mercapto group; a protecting group bonding to sulfur of the mercapto group, wherein the protecting group is used to avoid the chemical reaction of the mercapto group with reactive chemical species, e.g., oxygen, ketone, and aldehyde, etc. Besides, the manufacturing method thereof includes the steps of: providing silane compound having the mercapto group; bonding the protecting group to the mercapto group of the silane compound; performing the chemical reaction of triethanolamine with the silane compound having the protecting group for manufacturing the mercaptoalkylsilatrane derivative having the protecting group.
    • 具有保护基的巯基烷基硅烷衍生物及其制造方法。 巯基烷基硅烷衍生物包括:具有巯基的巯基烷基硅烷化合物; 与巯基结合硫的保护基团,其中保护基团用于避免巯基与活性化学物质例如氧,酮和醛等的化学反应。此外,其制造方法包括 步骤:提供具有巯基的硅烷化合物; 将保护基键合到硅烷化合物的巯基上; 进行三乙醇胺与具有保护基的硅烷化合物的化学反应,制造具有保护基的巯基烷基硅烷衍生物。
    • 8. 发明授权
    • Method for obtaining binding kinetic rate constants using fiber optic particle plasmon resonance (FOPPR) sensor
    • 使用光纤粒子等离子体共振(FOPPR)传感器获得结合动力学速率常数的方法
    • US09506861B2
    • 2016-11-29
    • US14063763
    • 2013-10-25
    • NATIONAL CHUNG CHENG UNIVERSITY
    • Shau-Chun WangLai-Kwan ChauTing-Chou ChangChao-Ching Wu
    • G01N21/552G01N21/55G01N21/27G01N21/77
    • G01N21/55G01N21/272G01N21/554G01N21/7703
    • A method for obtaining the binding kinetic rate constants using fiber optic particle plasmon resonance (FOPPR) sensor, suitable for a test solution with two or more concentrations, which employs the following major steps: providing one FOPPR sensor instrument system, obtaining optical time-resolved signal intensities starting at the initial time to the steady state of the two or more regions, substituting the measured signal intensity values into the formula which is derived by using the pseudo-first order rate equation model. In addition, this method measures the temporal signal intensity evolution under static conditions as the samples are quickly loaded. As a result, unlike the conventional device where the sample is continuously infused, the method is able to measure the association and dissociation rate constants of which the upper bounds are not limited by the sample flow rate.
    • 一种使用光纤粒子等离子体共振(FOPPR)传感器获得结合动力学速率常数的方法,适用于具有两个或多个浓度的测试溶液,其采用以下主要步骤:提供一个FOPPR传感器仪器系统,获得光学时间分辨 信号强度从初始时间开始到两个或更多个区域的稳定状态,将测量的信号强度值代入通过使用伪一阶速率方程模型导出的公式。 此外,该方法测量样品快速加载时在静态条件下的时间信号强度演化。 结果,与连续输入样品的常规装置不同,该方法能够测量上限的关联和解离速率常数不受样品流速的限制。