4.3 Article

A curing agent method to synthesize ordered mesoporous carbons from linear novolac phenolic resin polymers

Journal

JOURNAL OF MATERIALS CHEMISTRY
Volume 19, Issue 36, Pages 6536-6541

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/b908183f

Keywords

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Funding

  1. NSF of China [20890123, 20721063, 20821140537]
  2. State Key Basic Research Program of PRC [2006CB932302, 2009CB930400]
  3. Shanghai Leading Academic Discipline Project [B108]

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In this paper, we report a curing agent method for the synthesis of ordered mesoporous carbonaceous materials from a linear polymer precursor. 3-D Body-centered cubic (Im (3) over barm) and 2-D hexagonal (p6mm) ordered mesoporous carbons have been obtained from the blends of hexamethyltetramine (HMTA) treated novolac precursor and amphiphilic triblock copolymers Pluronic F127 and PEO-PBO-PEO B50-6600 via the EISA strategy. The mesoporous carbons have a 3-D carbonaceous framework with low nitrogen content, and uniform mesopores (3.3-3.8 nm), BET surface areas (similar to 690 m(2)g(-1)) and pore volumes (similar to 0.49 cm(3)g(-1)). The key to the synthesis is the use of HMTA as a curing agent to cross-link novolac precursors obtained under acidic conditions. Methylene released by HMTA at elevated temperature can cause the linear novolac 3-D cross-linking to form a thermosetting polymeric framework. The curing agent strategy extends the composition of mesoporous polymeric frameworks.

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