Single-site homogeneous catalysts need to be activated by a co-catalyst or counterion. The high activity imparted by methylaluminoxane (MAO) has caused it to be one of the most important co-catalysts. In fact it can be argued that the success of the metallocenes is largely due to the discovery of MAO. However, despite intensive studies MAO has remained a 'black box'. The presence of multiple equilibria between different (AlOMe)(n) oligomers coupled with the interaction between MAO and TMA has hindered experimental structural assignment of MAO. This has made it nearly impossible to characterize the dormant and active species present in olefin polymerization and therefore to theoretically investigate the mechanism of this process. M...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
MAO is the cocatalyst in metallocene catalytic systems, which are widely used in single-site olefin ...
We describe and compare the proposed mechanisms of ethene polymerization by the metallocene/methylal...
MAO is the co-catalyst in the metallocene catalytic systems, which are widely used in single site ol...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery in the early eighties, methylalumoxane (MAO) has grown from an academic serendip...
Metallocene-based olefin polymerization catalysts often require large excesses of co-catalyst for op...
Metallocene-based olefin polymerization catalysts often require large excesses of co-catalyst for op...
Metallocene-based olefin polymerization catalysts often require large excesses of co-catalyst for op...
In single-site olefin polymerization catalysis, a large excess of cocatalyst is often required for t...
In single-site olefin polymerization catalysis, a large excess of cocatalyst is often required for t...
In single-site olefin polymerization catalysis, a large excess of cocatalyst is often required for t...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
MAO is the cocatalyst in metallocene catalytic systems, which are widely used in single-site olefin ...
We describe and compare the proposed mechanisms of ethene polymerization by the metallocene/methylal...
MAO is the co-catalyst in the metallocene catalytic systems, which are widely used in single site ol...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery in the early eighties, methylalumoxane (MAO) has grown from an academic serendip...
Metallocene-based olefin polymerization catalysts often require large excesses of co-catalyst for op...
Metallocene-based olefin polymerization catalysts often require large excesses of co-catalyst for op...
Metallocene-based olefin polymerization catalysts often require large excesses of co-catalyst for op...
In single-site olefin polymerization catalysis, a large excess of cocatalyst is often required for t...
In single-site olefin polymerization catalysis, a large excess of cocatalyst is often required for t...
In single-site olefin polymerization catalysis, a large excess of cocatalyst is often required for t...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...
Since its discovery, methylalumoxane (MAO) has become of great importance as a cocatalyst in homogen...