Radiofrequency Encoded Combinatorial Chemistry
Radiofrequency Encoded Combinatorial Chemistry
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DOI:
10.1002/anie.199522891
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发表时间:
1995-11
影响因子:
--
通讯作者:
K. Nicolaou;Xiao-yi Xiao-Xiao-yi-Xiao-144962926;Z. Parandoosh;A. Senyei;M. Nova
中科院分区:
文献类型:
--
作者:
K. Nicolaou;Xiao-yi Xiao-Xiao-yi-Xiao-144962926;Z. Parandoosh;A. Senyei;M. Nova
Combinatorial chemistry"'has recently been recognized as a powerful tool in drug discovery"] and materials science.[31 Although the potential of this method in these areas is enormous, its current scope is limited by several factors."'Particularly prohibitive is the lack of a general encoding system for following the synthetic sequence leading to the chemical constructs so that structural characterization can be facilitated. Despite the introduction of several encoding.[41 physicaL1'] and deconvolution 161 techniques for identification of members in a chemical library, serious practical issues still remain and a more general and practical solution to this problem is needed. We introduce here a new concept for encoding combinatorial chemical libraries based on radiofrequency signals and semiconductor memory devices using a multifunctional Microreactor. Radiofrequency Encoded Combinatorial (RECTM) chemistry. as this new method is termed, combines recent advances in microelectronics, sensors, and chemistry and uses a Single or Multiple Addressable Radiofrequency Tag (SMARTTM) semiconductor unit ['] to record encoding and other relevant information along the synthetic pathway. This allows identification of library members by retrieval of the recorded history and other specific information re-