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(propene)[N,N,N-tris(2-pyridylmethyl-κN)amine-κN]rhodium(I) tetraphenylborate
(propene)[N,N,N-tris(2-pyridylmethyl-κN)amine-κN]rhodium(I) tetraphenylborate | 585533-21-7
中文名称
——
中文别名
——
英文名称
(propene)[N,N,N-tris(2-pyridylmethyl-κN)amine-κN]rhodium(I) tetraphenylborate
英文别名
——
CAS
585533-21-7
化学式
C
21
H
24
N
4
Rh*C
24
H
20
B
mdl
——
分子量
754.588
InChiKey
HIQIRAOPANGRFC-UHFFFAOYSA-N
BEILSTEIN
——
EINECS
——
物化性质
计算性质
ADMET
安全信息
SDS
制备方法与用途
上下游信息
反应信息
文献信息
表征谱图
同类化合物
相关功能分类
相关结构分类
计算性质
辛醇/水分配系数(LogP):
None
重原子数:
None
可旋转键数:
None
环数:
None
sp3杂化的碳原子比例:
None
拓扑面积:
None
氢给体数:
None
氢受体数:
None
反应信息
作为反应物:
描述:
(propene)[N,N,N-tris(2-pyridylmethyl-κN)amine-κN]rhodium(I) tetraphenylborate
在 air 作用下, 以 neat (no solvent) 为溶剂, 生成
(peroxo-κ2O1,O2)[N,N,N-tris(2-pyridylmethyl-κN)amine-κN]rhodium(III) tetraphenylborate
参考文献:
名称:
3‐Metalla‐1,2‐dioxolanes and Their Reactivity
摘要:
Abstract
The ethene complexes [M
I
(CH
2
CH
2
)]
+
(M = Ir, Rh) can be oxygenated by molecular oxygen or air in the solid state, to form isolable unsubstituted 3‐metalla‐1,2‐dioxolanes [M
III
(CH
2
CH
2
OO‐κ
2
C
1
,
O
2
)]
+
. Such selectivity could not be achieved in solution. The stereoselectivity of the oxygenation process is highly dependent on the ligand, the metal and the counterion used. Oxygenation of [(tpa)M(CH
2
CH
2
)]PF
6
{tpa = tri(2‐pyridylmethyl)amine;
4
PF
6
,
7
PF
6
} results in the formation of two isomeric 3‐metalladioxolanes, whereas oxygenation of [(tpa)M(CH
2
CH
2
)]BPh
4
(
4
BPh
4
,
7
BPh
4
) only yields one isomer. Furthermore, oxygenation of [(Metpa)Rh(CH
2
CH
2
)]PF
6
{
14
PF
6
, Metpa = [(6‐methyl‐2‐pyridyl)methyl]bis(2‐pyridylmethyl)amine} proved to be much slower than that of [(tpa)Rh(CH
2
CH
2
)]PF
6
(
7
PF
6
). The
solid
propene complex [(tpa)Rh(CH
2
CHCH
3
)]BPh
4
(
23
BPh
4
) loses propene on reaction with molecular oxygen, and selectively forms the peroxo complex [(tpa)Rh(η
2
‐O
2
)]BPh
4
(
24
BPh
4
). The obtained 3‐metalla‐1,2‐dioxolanes rearrange, both in the solid state and in solution, to formylmethyl hydroxy complexes on exposure to photons or protons. The isomeric 3‐rhoda‐1,2‐dioxolanes [(tpa)Rh(CH
2
CH
2
OO‐κ
2
C
1
,
O
2
)]
+
8a
+
and
8b
+
differ in reactivity. On exposure of a solution of
8a
PF
6
/
8b
PF
6
to glass‐filtered daylight, isomer
8b
+
rearranges to form the formylmethyl hydroxy complex
9b
+
. This rearrangement is three times faster than the rearrangement of
8a
+
to
9a
+
. The iridadioxolanes are much more reactive than the corresponding rhodadioxolanes, whereas the iridium formylmethyl hydroxy complexes are less reactive than the corresponding rhodium formylmethyl hydroxy complexes. The tpa formylmethyl hydroxy complexes react reversibly with carbon dioxide to form formylmethyl hydrogen carbonate complexes. (© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2003)
DOI:
10.1002/ejic.200390139
作为产物:
描述:
三聚丙烯
、
三(2-吡啶基甲基)胺
、
四苯硼钠
、 chlorobis(ethylene)rhodium(I) dimer 在 NaHCO
3
作用下, 以
甲醇
为溶剂, 以69%的产率得到(propene)[N,N,N-tris(2-pyridylmethyl-κN)amine-κN]rhodium(I) tetraphenylborate
参考文献:
名称:
3‐Metalla‐1,2‐dioxolanes and Their Reactivity
摘要:
Abstract
The ethene complexes [M
I
(CH
2
CH
2
)]
+
(M = Ir, Rh) can be oxygenated by molecular oxygen or air in the solid state, to form isolable unsubstituted 3‐metalla‐1,2‐dioxolanes [M
III
(CH
2
CH
2
OO‐κ
2
C
1
,
O
2
)]
+
. Such selectivity could not be achieved in solution. The stereoselectivity of the oxygenation process is highly dependent on the ligand, the metal and the counterion used. Oxygenation of [(tpa)M(CH
2
CH
2
)]PF
6
{tpa = tri(2‐pyridylmethyl)amine;
4
PF
6
,
7
PF
6
} results in the formation of two isomeric 3‐metalladioxolanes, whereas oxygenation of [(tpa)M(CH
2
CH
2
)]BPh
4
(
4
BPh
4
,
7
BPh
4
) only yields one isomer. Furthermore, oxygenation of [(Metpa)Rh(CH
2
CH
2
)]PF
6
{
14
PF
6
, Metpa = [(6‐methyl‐2‐pyridyl)methyl]bis(2‐pyridylmethyl)amine} proved to be much slower than that of [(tpa)Rh(CH
2
CH
2
)]PF
6
(
7
PF
6
). The
solid
propene complex [(tpa)Rh(CH
2
CHCH
3
)]BPh
4
(
23
BPh
4
) loses propene on reaction with molecular oxygen, and selectively forms the peroxo complex [(tpa)Rh(η
2
‐O
2
)]BPh
4
(
24
BPh
4
). The obtained 3‐metalla‐1,2‐dioxolanes rearrange, both in the solid state and in solution, to formylmethyl hydroxy complexes on exposure to photons or protons. The isomeric 3‐rhoda‐1,2‐dioxolanes [(tpa)Rh(CH
2
CH
2
OO‐κ
2
C
1
,
O
2
)]
+
8a
+
and
8b
+
differ in reactivity. On exposure of a solution of
8a
PF
6
/
8b
PF
6
to glass‐filtered daylight, isomer
8b
+
rearranges to form the formylmethyl hydroxy complex
9b
+
. This rearrangement is three times faster than the rearrangement of
8a
+
to
9a
+
. The iridadioxolanes are much more reactive than the corresponding rhodadioxolanes, whereas the iridium formylmethyl hydroxy complexes are less reactive than the corresponding rhodium formylmethyl hydroxy complexes. The tpa formylmethyl hydroxy complexes react reversibly with carbon dioxide to form formylmethyl hydrogen carbonate complexes. (© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2003)
DOI:
10.1002/ejic.200390139
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