结构:C1COCCN1
HCID8083

Morpholine

C4H9NO87.122 g/molCAS 110-91-8

IDENTITY

结构与身份

标准 SMILES
C1COCCN1
InChIKey
YNAVUWVOSKDBBP-UHFFFAOYSA-N
分子式
C4H9NO
平均分子量
87.122 g/mol
单同位素质量
87.06841391
扩展信息尚未完成同步。

REACTIONS

参与反应

196
HRID1812439

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery`

作为催化剂
HRID 1812439 方程式

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery` · 10.1038/s41467-023-42446-5

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HRID1812450

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery`

作为催化剂
HRID 1812450 方程式

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery` · 10.1038/s41467-023-42446-5

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HRID1812461

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery`

作为催化剂
HRID 1812461 方程式

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery` · 10.1038/s41467-023-42446-5

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HRID1812472

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery`

作为催化剂
HRID 1812472 方程式

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery` · 10.1038/s41467-023-42446-5

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HRID1812483

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery`

作为催化剂
HRID 1812483 方程式

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery` · 10.1038/s41467-023-42446-5

查看条件与参与物
HRID1812494

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery`

作为催化剂
HRID 1812494 方程式

Dataset from `Ultra-high-throughput mapping of the chemical space of asymmetric catalysis enables accelerated reaction discovery` · 10.1038/s41467-023-42446-5

查看条件与参与物