Blending synthetic biology and synthetic chemistry represents a powerful approach to diversity complex molecules. To further enable this, compatible synthetic tools are needed. We report the first Buchwald Hartwig amination reactions with unprotected halo-tryptophans under aqueous conditions and demonstrate this methodology is applicable also to the modification of unprotected tripeptides and the natural product barettin
The blending together of synthetic chemistry with natural product biosynthesis represents a potentia...
The research leading to these results has received funding from the European Research Council under ...
Gruß H, Belu C, Bernhard LM, Merschel A, Sewald N. Fluorogenic Diversification of Unprotected Bromot...
Blending synthetic biology and synthetic chemistry represents a powerful approach to diversity compl...
Blending synthetic chemistry and biology is synthetically powerful. To further enable this, compatib...
Blending synthetic chemistry and biology is synthetically powerful. To further enable this, compatib...
Blending synthetic biology and synthetic chemistry represents a powerful approach to diversity compl...
The research leading to these results has received funding from the European Research Council under ...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to syn...
The blending together of synthetic chemistry with natural product biosynthesis represents a potentia...
The blending together of synthetic chemistry with natural product biosynthesis represents a potentia...
The research leading to these results has received funding from the European Research Council under ...
Gruß H, Belu C, Bernhard LM, Merschel A, Sewald N. Fluorogenic Diversification of Unprotected Bromot...
Blending synthetic biology and synthetic chemistry represents a powerful approach to diversity compl...
Blending synthetic chemistry and biology is synthetically powerful. To further enable this, compatib...
Blending synthetic chemistry and biology is synthetically powerful. To further enable this, compatib...
Blending synthetic biology and synthetic chemistry represents a powerful approach to diversity compl...
The research leading to these results has received funding from the European Research Council under ...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to synt...
The blending of synthetic chemistry with biosynthetic processes provides a powerful approach to syn...
The blending together of synthetic chemistry with natural product biosynthesis represents a potentia...
The blending together of synthetic chemistry with natural product biosynthesis represents a potentia...
The research leading to these results has received funding from the European Research Council under ...
Gruß H, Belu C, Bernhard LM, Merschel A, Sewald N. Fluorogenic Diversification of Unprotected Bromot...