A highly photoluminescent (PL) porous covalent triazine-based framework (PCTF-8) is synthesized from tetra(4-cyanophenyl) ethylene by using trifluoromethanesulfonic acid as the catalyst at room temperature. Due to triazine units in the framework, the PCTF-8 exhibits excellent thermal stability (>400 degrees C). The Brunauer-Emmett-Teller (BET) specific surface area of PCTF-8 is 625 m(2) g(-1) which is lower than the one obtained from the synthesis under Lewis acid conditions (ZnCl2). At 1 bar and 273 K, the PCTF-8 adsorbs a significant amount of CO2 (56 cm(3) g(-1)) and CH4 (17 cm(3) g(-1)) which is highly comparable to nanoporous 1,3,5-triazine frameworks (NOP-1-6, 29-56 cm(3) g(-1)). This nitrogen rich framework exhibits good ideal select...
The development of advanced functional porous materials for efficient carbon capture and separation ...
Here I describe the synthesis and characterization of a new Covalent Triazine Framework (CTF) with t...
The development of advanced functional porous materials for efficient carbon capture and separation ...
A highly photoluminescent (PL) porous covalent triazine-based framework (PCTF-8) is synthesized from...
A highly photoluminescent (PL) porous covalent triazine-based framework (PCTF-8) is synthesized from...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Covalent Triazine Frameworks (CTFs), a nitrogen-rich subclass of Porous Organic Polymers (POPs), sho...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Covalent Triazine Frameworks (CTFs), a nitrogen-rich subclass of Porous Organic Polymers (POPs), sho...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Covalent triazine frameworks (CTFs) have emerged as new candidate materials in various research area...
In this article, a set of novel covalent triazine frameworks (CTFs) were prepared by trimerization o...
Covalent Triazine Frameworks (CTFs), a nitrogen-rich subclass of Porous Organic Polymers (POPs), sho...
The search for efficient and high performing physisorbents for CO2 capture and separation from point...
The development of advanced functional porous materials for efficient carbon capture and separation ...
Here I describe the synthesis and characterization of a new Covalent Triazine Framework (CTF) with t...
The development of advanced functional porous materials for efficient carbon capture and separation ...
A highly photoluminescent (PL) porous covalent triazine-based framework (PCTF-8) is synthesized from...
A highly photoluminescent (PL) porous covalent triazine-based framework (PCTF-8) is synthesized from...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Covalent Triazine Frameworks (CTFs), a nitrogen-rich subclass of Porous Organic Polymers (POPs), sho...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Covalent Triazine Frameworks (CTFs), a nitrogen-rich subclass of Porous Organic Polymers (POPs), sho...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Covalent triazine frameworks (CTFs) have emerged as new candidate materials in various research area...
In this article, a set of novel covalent triazine frameworks (CTFs) were prepared by trimerization o...
Covalent Triazine Frameworks (CTFs), a nitrogen-rich subclass of Porous Organic Polymers (POPs), sho...
The search for efficient and high performing physisorbents for CO2 capture and separation from point...
The development of advanced functional porous materials for efficient carbon capture and separation ...
Here I describe the synthesis and characterization of a new Covalent Triazine Framework (CTF) with t...
The development of advanced functional porous materials for efficient carbon capture and separation ...