International Journal of Nanomaterials, Nanotechnology and Nanomedicine

Short Communication

Nano-Confined Synthesis of Fullerene Mesoporous Carbon (C60- FMC) with Bimodal Pores: XRD, TEM, Structural Properties, NMR, and Protein Immobilization

Nanoconfined synthesized crystalline fullerene mesoporous carbon (C60-FMC) with bimodal pore architectures of 4.95 nm and 10-15 nm pore sizes characterized by XRD, TEM, nitrogen adsorption/ desorption isotherm and solid-state NMR, and the material was used for protein immobilization. The solid-state 13C NMR spectrum of C60-FMC along with XRD, BET and TEM confirms the formation of fullerene mesoporous carbon structure C60-FMC. The immobilization of albumin (from bovine serum, BSA) protein biomolecule in a buffer solution at pH 4.7 was used to determine the adsorption properties of the C60-FMC material and its structural changes investigated by FT-IR. We demonstrated that the C60-FMC with high surface area and pore volumes have excellent adsorption capacity towards BSA protein molecule. Protein adsorption experiments clearly showed that the C60-FMC with bimodal pore architectures (4.95 nm and 10-15 nm) are suitable material to be used for protein adsorption.

http://www.peertechz.com/Nanomaterials-Nanotechnology-Nanomedicine/pdf/IJNNN-1-106.pdf

Comments

Popular posts from this blog

Peertechz is not Predatory Open Access Publisher

The prevention and cure research of emergency intervention therapy of balloon occlusion of LAD occurring reperfusion arrhythmia

Case Report: Reynolds Syndrome