A mononuclear iron(II) neutral complex (1) is screened for sensing abilities for a wide spectrum of chemicals and to evaluate the response function toward physical perturbation like temperature and mechanical stress. Interestingly, 1 precisely detects methanol among an alcohol series. The sensing process is visually detectable, fatigue-resistant, highly selective, and reusable. The sensing ability is attributed to molecular sieving and subsequent spin-state change of iron centers, after a crystal-to-crystal transformation
Iron is one of the most important elements in metabolic processes, being indispensable for all livin...
Differentiation of solvents having similar physicochemical properties, such as ethanol and methanol,...
Since the discovery of graphene, the star among new materials, there has been a surge of attention f...
A mononuclear iron(II) neutral complex (1) is screened for sensing abilities for a wide spectrum of ...
A mononuclear iron(II) neutral complex (<b>1</b>) is screened for sensing abilities for a wide spec...
A mononuclear iron(II) neutral complex (1) was screened for colorimetric sensing abilities for a wid...
Single-crystal-to-single-crystal (SCSC) transformations of molecular materials involving exchange of...
Fiat lux on alcohols: Molecular-level resolution was achieved for the detection of short-chain alcoh...
Fiat lux on alcohols: Molecular-level resolution was achieved for the detection of short-chain alcoh...
Molecular-level resolution was achieved for the detection of short-chain alcohols in the vapor phase...
In recent years, attention has been focused on the efficient detection of chemical pollutants, espec...
We present herein the magnetic and Mössbauer investigation of a colorimetric chemical sensor with th...
In recent years, more attention has been focused on the efficient detection of chemical pollutants, ...
Reversible chemical reactions as the basis for optical sensors used to detect amines, alcohols and h...
A sensor for ethanol is described that is based on the fluorescent probe 5,10,15,20-tetraphenyl porp...
Iron is one of the most important elements in metabolic processes, being indispensable for all livin...
Differentiation of solvents having similar physicochemical properties, such as ethanol and methanol,...
Since the discovery of graphene, the star among new materials, there has been a surge of attention f...
A mononuclear iron(II) neutral complex (1) is screened for sensing abilities for a wide spectrum of ...
A mononuclear iron(II) neutral complex (<b>1</b>) is screened for sensing abilities for a wide spec...
A mononuclear iron(II) neutral complex (1) was screened for colorimetric sensing abilities for a wid...
Single-crystal-to-single-crystal (SCSC) transformations of molecular materials involving exchange of...
Fiat lux on alcohols: Molecular-level resolution was achieved for the detection of short-chain alcoh...
Fiat lux on alcohols: Molecular-level resolution was achieved for the detection of short-chain alcoh...
Molecular-level resolution was achieved for the detection of short-chain alcohols in the vapor phase...
In recent years, attention has been focused on the efficient detection of chemical pollutants, espec...
We present herein the magnetic and Mössbauer investigation of a colorimetric chemical sensor with th...
In recent years, more attention has been focused on the efficient detection of chemical pollutants, ...
Reversible chemical reactions as the basis for optical sensors used to detect amines, alcohols and h...
A sensor for ethanol is described that is based on the fluorescent probe 5,10,15,20-tetraphenyl porp...
Iron is one of the most important elements in metabolic processes, being indispensable for all livin...
Differentiation of solvents having similar physicochemical properties, such as ethanol and methanol,...
Since the discovery of graphene, the star among new materials, there has been a surge of attention f...