Precision functionality is the key feature of next-generation radical polymerization enabling the implementation of applications such as controlled drug delivery, self-healing material design, and optoelectronic materials. The incorporation of functionality is however diametrically opposed to diffusion-controlled growth-inhibiting termination reactions. The fundamental bottleneck remains the identification of a generic and flexible protocol to accurately map the short-long termination reactivity. Herein, we introduce a unique framework based on the reversible addition-fragmentation chain transfer-chain length dependent-termination (RAFT-CLD-T) method that encompasses an extension of state-of-the-art fundamental theories and a correction for...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
Few would dispute that the study of the termination reaction has turned out to be the most difficult...
Few would dispute that the study of the termination reaction has turned out to be the most difficult...
Precision functionality is the key feature of next-generation radical polymerization enabling the im...
Precision functionality is the key feature of next-generation radical polymerization enabling the im...
Precision functionality is the key feature of next-generation radical polymerization enabling the im...
Precision functionality is the key feature of next-generation radical polymerization enabling the im...
The RAFT-CLD-T methodology is demonstrated to be not only applicable to 1-substituted monomers such ...
The RAFT-CLD-T methodology is demonstrated to be not only applicable to 1-substituted monomers such ...
The reversible addition-fragmentation chain transfer-chain length dependent termination (RAFT-CLD-T)...
Free-radical polymerisation (FRP) has been one of the most important techniques for producing materi...
A universal methodology to obtain the termination rate coefficients in free radical polymerization a...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
Few would dispute that the study of the termination reaction has turned out to be the most difficult...
Few would dispute that the study of the termination reaction has turned out to be the most difficult...
Precision functionality is the key feature of next-generation radical polymerization enabling the im...
Precision functionality is the key feature of next-generation radical polymerization enabling the im...
Precision functionality is the key feature of next-generation radical polymerization enabling the im...
Precision functionality is the key feature of next-generation radical polymerization enabling the im...
The RAFT-CLD-T methodology is demonstrated to be not only applicable to 1-substituted monomers such ...
The RAFT-CLD-T methodology is demonstrated to be not only applicable to 1-substituted monomers such ...
The reversible addition-fragmentation chain transfer-chain length dependent termination (RAFT-CLD-T)...
Free-radical polymerisation (FRP) has been one of the most important techniques for producing materi...
A universal methodology to obtain the termination rate coefficients in free radical polymerization a...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
The reversible addition fragmentation chain transfer (RAFT) process can be utilized in conjunction w...
Few would dispute that the study of the termination reaction has turned out to be the most difficult...
Few would dispute that the study of the termination reaction has turned out to be the most difficult...