Technology Process of C37H46N5O14P
There total 11 articles about C37H46N5O14P which
guide to synthetic route it.
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synthetic route:
- Guidance literature:
-
Multi-step reaction with 6 steps
1: 92 percent / NH2OH*HCl, Et3N, molecular sieves / tetrahydrofuran
2: 100 percent / NaBH3CN / acetic acid
3: 87 percent / Et3N / tetrahydrofuran
4: 92 percent / LiOH / methanol
5: 1) POCl3, pyridine / 1) THF, 2) THF
With
pyridine; lithium hydroxide; molecular sieve; hydroxylamine hydrochloride; sodium cyanoborohydride; triethylamine; trichlorophosphate;
In
tetrahydrofuran; methanol; acetic acid;
DOI:10.1016/0960-894X(96)00169-2
- Guidance literature:
-
Multi-step reaction with 7 steps
1: 91 percent / Et3N / tetrahydrofuran
2: 92 percent / NH2OH*HCl, Et3N, molecular sieves / tetrahydrofuran
3: 100 percent / NaBH3CN / acetic acid
4: 87 percent / Et3N / tetrahydrofuran
5: 92 percent / LiOH / methanol
6: 1) POCl3, pyridine / 1) THF, 2) THF
With
pyridine; lithium hydroxide; molecular sieve; hydroxylamine hydrochloride; sodium cyanoborohydride; triethylamine; trichlorophosphate;
In
tetrahydrofuran; methanol; acetic acid;
DOI:10.1016/0960-894X(96)00169-2
- Guidance literature:
-
Multi-step reaction with 4 steps
1: 83 percent / TFA / CH2Cl2
2: 98 percent / 1-(3'-dimethylaminoproyl)-3-ethylcarbodiimide, 4-dimethylaminopyridine / CH2Cl2
3: 76 percent / TBAF / tetrahydrofuran
With
dmap; tetrabutyl ammonium fluoride; N-(3-dimethylaminopropyl)-N-ethylcarbodiimide; trifluoroacetic acid;
In
tetrahydrofuran; dichloromethane;
DOI:10.1016/0960-894X(96)00169-2