当社グループは 3,000 以上の世界的なカンファレンスシリーズ 米国、ヨーロッパ、世界中で毎年イベントが開催されます。 1,000 のより科学的な学会からの支援を受けたアジア および 700 以上の オープン アクセスを発行ジャーナルには 50,000 人以上の著名人が掲載されており、科学者が編集委員として名高い
。オープンアクセスジャーナルはより多くの読者と引用を獲得
700 ジャーナル と 15,000,000 人の読者 各ジャーナルは 25,000 人以上の読者を獲得
Dr. Matthew Bzdok Nomi
In the presence of moisture, hydrolysis and polycondensation mechanisms cause the alkoxysilane groups linked to the ends of polymer chains to cross-link silyl-modified polymers. Three separate physical states can be distinguished during these processes (viscous, skin effect and cross-linked state). To establish the open time for the adhesive business, it is crucial to understand how these states evolve at each reaction time. This information is typically gathered manually. Automation of this monitoring could reduce human error and be used to screen a large number of catalysts or for extremely lengthy cross-linking reactions. Hence, by observing the decrease in intensity of the Si-OCH3 groups during chemical reactions, a contactless microprocessing technology was established to link these physical states with an optical technology, Raman spectroscopy. Using the least amount of chemical components possible, this online characterisation approach can also be utilised to compare the efficacy of various catalysts for the cross-linking of silylmodified polymers.