This paper focuses on polymers that demonstrate microporosity without possessing a network of covalent bonds—the so-called polymers of intrinsic microporosity (PIM). PIMs combine solution processability and microporosity with structural diversity and have proven utility for making membranes and sensors. After a historical account of the development of PIMs, their synthesis is described along with a comprehensive review of the PIMs that have been prepared to date. The important methods of characterising intrinsic microporosity, such as gas absorption, are outlined and structure-property relationships explained. Finally, the applications of PIMs as sensors and membranes for gas and vapour separations, organic nanofiltration, and pervaporation...
Microporous polymer membranes have been widely studied because of their excellent separation perform...
New materials for separations are constantly being developed to improve upon the current state-of-th...
Polymers of intrinsic microporosity (PIMs) have been identified as potential next generation membran...
This paper focuses on polymers that demonstrate microporosity without possessing a network of covale...
Novel types of microporous material are required for chemoselective adsorptions, separations and het...
Polymers of Intrinsic Microporosity (or PIMs) provide porous materials due to their highly contorted...
Polymers of Intrinsic Microporosity (PIMs) combine the desirable processability of polymers with a ...
This tutorial review describes recent research directed towards the synthesis of polymer-based organ...
Polymers of intrinsic microporosity (PIMs) owe their microporosity to their rigid and contorted str...
This research reported in this thesis is based on the synthesis of novel polymers of intrinsic micro...
Organic open frameworks with well-defined micropore (pore dimensions below 2 nm) structure are attra...
The work described in this thesis is concerned primarily with the soluble Polymers of Intrinsic Micr...
The concept of free volume is useful for explaining aspects of the chain mobility and permeability o...
The work reported in this thesis describes the successful preparation of three classes of polymer t...
Polymers of Intrinsic Microporosity (PIMs) are a new class of microporous material combining excel...
Microporous polymer membranes have been widely studied because of their excellent separation perform...
New materials for separations are constantly being developed to improve upon the current state-of-th...
Polymers of intrinsic microporosity (PIMs) have been identified as potential next generation membran...
This paper focuses on polymers that demonstrate microporosity without possessing a network of covale...
Novel types of microporous material are required for chemoselective adsorptions, separations and het...
Polymers of Intrinsic Microporosity (or PIMs) provide porous materials due to their highly contorted...
Polymers of Intrinsic Microporosity (PIMs) combine the desirable processability of polymers with a ...
This tutorial review describes recent research directed towards the synthesis of polymer-based organ...
Polymers of intrinsic microporosity (PIMs) owe their microporosity to their rigid and contorted str...
This research reported in this thesis is based on the synthesis of novel polymers of intrinsic micro...
Organic open frameworks with well-defined micropore (pore dimensions below 2 nm) structure are attra...
The work described in this thesis is concerned primarily with the soluble Polymers of Intrinsic Micr...
The concept of free volume is useful for explaining aspects of the chain mobility and permeability o...
The work reported in this thesis describes the successful preparation of three classes of polymer t...
Polymers of Intrinsic Microporosity (PIMs) are a new class of microporous material combining excel...
Microporous polymer membranes have been widely studied because of their excellent separation perform...
New materials for separations are constantly being developed to improve upon the current state-of-th...
Polymers of intrinsic microporosity (PIMs) have been identified as potential next generation membran...