Two-dimensional (2D) correlation spectroscopy is a powerful method to study the intermolecular interactions between different molecules/functional groups. In the present paper, variable concentrations were selected to construct 2D synchronous spectrum for studying the weak intermolecular interactions in solutions. Mathematical analysis performed on 2D synchronous spectra using variable concentration as an external perturbation shows that the 'Orthogonal Sample Design Scheme' is necessary for eliminating the interfering cross peaks in 2D synchronous spectra. The authors prepared four mixed-solutes-solutions whose concentration series satisfy the 'Orthogonal Sample Design Scheme' for each chemical system and the consequent...
This paper introduces a new approach called double asynchronous orthogonal sample design (DAOSD) to ...
A new approach called "asynchronous spectrum with auxiliary peaks (ASAP)" is proposed for ...
A new approach called "asynchronous spectrum with auxiliary peaks (ASAP)" is proposed for ...
This paper introduces a new approach named double orthogonal sample design scheme (DOSD) to probe In...
We propose a substantially simplified approach to construct a pair of 2D asynchronous spectra based ...
We explore whether it is possible to use 2D correlation spectrum to characterize intermolecular inte...
Two-dimensional (2D) correlation analysis has been utilized to investigate NIR water bands perturbed...
The spectral behavior of a pair of 2D asynchronous spectra generated by using the double asynchronou...
This paper introduces a new approach to analysis of spectra called asynchronous orthogonal sample de...
This paper introduces a new approach to probing intermolecular interactions based on a framework of ...
This paper introduces a new approach called double asynchronous orthogonal sample design (DAOSD) to ...
Weak interactions between lanthanide (III) ions and organic ligands in solution mixtures are studied...
Weak interactions between lanthanide (III) ions and organic ligands in solution mixtures are studied...
This paper introduces a new approach called double asynchronous orthogonal sample design (DAOSD) to ...
A new concentration series is proposed for the construction of a two-dimensional (2D) synchronous sp...
This paper introduces a new approach called double asynchronous orthogonal sample design (DAOSD) to ...
A new approach called "asynchronous spectrum with auxiliary peaks (ASAP)" is proposed for ...
A new approach called "asynchronous spectrum with auxiliary peaks (ASAP)" is proposed for ...
This paper introduces a new approach named double orthogonal sample design scheme (DOSD) to probe In...
We propose a substantially simplified approach to construct a pair of 2D asynchronous spectra based ...
We explore whether it is possible to use 2D correlation spectrum to characterize intermolecular inte...
Two-dimensional (2D) correlation analysis has been utilized to investigate NIR water bands perturbed...
The spectral behavior of a pair of 2D asynchronous spectra generated by using the double asynchronou...
This paper introduces a new approach to analysis of spectra called asynchronous orthogonal sample de...
This paper introduces a new approach to probing intermolecular interactions based on a framework of ...
This paper introduces a new approach called double asynchronous orthogonal sample design (DAOSD) to ...
Weak interactions between lanthanide (III) ions and organic ligands in solution mixtures are studied...
Weak interactions between lanthanide (III) ions and organic ligands in solution mixtures are studied...
This paper introduces a new approach called double asynchronous orthogonal sample design (DAOSD) to ...
A new concentration series is proposed for the construction of a two-dimensional (2D) synchronous sp...
This paper introduces a new approach called double asynchronous orthogonal sample design (DAOSD) to ...
A new approach called "asynchronous spectrum with auxiliary peaks (ASAP)" is proposed for ...
A new approach called "asynchronous spectrum with auxiliary peaks (ASAP)" is proposed for ...