<p>Figure showing fouriertransforminfrared (FTIR) spectra of (a) Chitosan, (b) <i>N</i>-phthaloyl-chitosan, (c) <i>N</i>-phthaloyl-chitosan O-prop-2-ynyl carbamate, (d) derivative 1, (e) derivative 2, (f) derivative 3, (g) derivative 4, and (h) derivative 5.</p
FTIR spectrum chart indicating the identified functional groups in S. chirayita powder.</p
<p>FTIR spectra in the region of 3500-2800 cm<sup>−1</sup> of hydrated films (pH 6.0) for free chito...
The accumulation of domestic wastes throughout the world has become a serious environmental concern ...
<p>FTIR spectrum of (a), chitosan; (b), carboxymethyl chitosan; (c), nanocomplex of CMC/ACP; (d), sy...
<p>The characterization of chitosan and the LMWSC, FTIR spectra (A) and DRS patterns (B).</p
<p>FTIR spectra in the region of 1800–600 cm<sup>−1</sup> of hydrated films (pH 6) for free chitosan...
Figure S6. FTIR spectra of (a) Nic@Chi Np’s, (b) Chitosan nanoparticles (void), (c) Niclosamide dr...
<p>FTIR spectra in the region of 1800–600 cm<sup>−1</sup> of hydrated films (pH 6) for free chitosan...
<p>(A) Scheme of synthesis of the RBITC-labeled chitosan. (B) FTIR spectra of the unlabeled and RBIT...
<p>Representative fourier transformed infrared spectra of (a) free CNT, free Indolicidin (I), CNT sp...
<p>(bottom two curves) obtained at different drug concentrations (indicated on the figure).</p
<p>(A) CMC—(a) Pure CMC and (b) CMC@AgNPs. (B) SA—(a) Pure SA and (b) SA@AgNPs.</p
<p>Fourier transform infrared spectroscopy spectra of SPIONs (blue curve) and Tf-SPIONs (red curve),...
<p>FTIR spectra of lipid (tristearin), protein (gluten) and polysaccharides (chitin, arabinoxylan, β...
<p>FTIR spectra of (a) crystalline GOD; (b) MMCHI membrane; (c) GOD-MMCHI membrane showing the inter...
FTIR spectrum chart indicating the identified functional groups in S. chirayita powder.</p
<p>FTIR spectra in the region of 3500-2800 cm<sup>−1</sup> of hydrated films (pH 6.0) for free chito...
The accumulation of domestic wastes throughout the world has become a serious environmental concern ...
<p>FTIR spectrum of (a), chitosan; (b), carboxymethyl chitosan; (c), nanocomplex of CMC/ACP; (d), sy...
<p>The characterization of chitosan and the LMWSC, FTIR spectra (A) and DRS patterns (B).</p
<p>FTIR spectra in the region of 1800–600 cm<sup>−1</sup> of hydrated films (pH 6) for free chitosan...
Figure S6. FTIR spectra of (a) Nic@Chi Np’s, (b) Chitosan nanoparticles (void), (c) Niclosamide dr...
<p>FTIR spectra in the region of 1800–600 cm<sup>−1</sup> of hydrated films (pH 6) for free chitosan...
<p>(A) Scheme of synthesis of the RBITC-labeled chitosan. (B) FTIR spectra of the unlabeled and RBIT...
<p>Representative fourier transformed infrared spectra of (a) free CNT, free Indolicidin (I), CNT sp...
<p>(bottom two curves) obtained at different drug concentrations (indicated on the figure).</p
<p>(A) CMC—(a) Pure CMC and (b) CMC@AgNPs. (B) SA—(a) Pure SA and (b) SA@AgNPs.</p
<p>Fourier transform infrared spectroscopy spectra of SPIONs (blue curve) and Tf-SPIONs (red curve),...
<p>FTIR spectra of lipid (tristearin), protein (gluten) and polysaccharides (chitin, arabinoxylan, β...
<p>FTIR spectra of (a) crystalline GOD; (b) MMCHI membrane; (c) GOD-MMCHI membrane showing the inter...
FTIR spectrum chart indicating the identified functional groups in S. chirayita powder.</p
<p>FTIR spectra in the region of 3500-2800 cm<sup>−1</sup> of hydrated films (pH 6.0) for free chito...
The accumulation of domestic wastes throughout the world has become a serious environmental concern ...