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Classification of Elements and Compounds02:54

Classification of Elements and Compounds

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Pure substances consist of only one type of matter. A pure substance can be an element or a compound. An element consists of only one type of atom, while a compound consists of two or more types of atoms held together by a chemical bond. Elements are classified as atomic or molecular based on the nature of their basic units.
Compounds are pure substances composed of two or more elements in fixed, definite proportions. Compounds are classified as ionic or molecular (covalent) based on the bonds...
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Elements and Compounds01:27

Elements and Compounds

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Pure substances consist of only one type of matter. A pure substance can be an element or a compound. An element consists of only one type of atom, while a compound consists of two or more types of atoms held together by a chemical bond.
Elements
Elements are classified as atomic or molecular based on the nature of their basic units. They are unique forms of matter with specific chemical and physical properties that cannot break down into smaller substances by ordinary chemical reactions. There...
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Periodic Classification of the Elements04:00

Periodic Classification of the Elements

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The periodic table arranges atoms based on increasing atomic number so that elements with the same chemical properties recur periodically. When their electron configurations are added to the table, a periodic recurrence of similar electron configurations in the outer shells of these elements is observed. Because they are in the outer shells of an atom, valence electrons play the most important role in chemical reactions. The outer electrons have the highest energy of the electrons in an atom...
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Molecular Models02:00

Molecular Models

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Physical models representing molecular architectures of chemical compounds play essential roles in understanding chemistry. The use of molecular models makes it easier to visualize the structures and shapes of atoms and molecules.
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Key Elements for Plant Nutrition02:35

Key Elements for Plant Nutrition

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Like all living organisms, plants require organic and inorganic nutrients to survive, reproduce, grow and maintain homeostasis. To identify nutrients that are essential for plant functioning, researchers have leveraged a technique called hydroponics. In hydroponic culture systems, plants are grown—without soil—in water-based solutions containing nutrients. At least 17 nutrients have been identified as essential elements required by plants. Plants acquire these elements from the...
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Molecular Compounds: Formulas and Nomenclature03:10

Molecular Compounds: Formulas and Nomenclature

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Molecular compounds or covalent compounds result when atoms share electrons to form covalent bonds. Since there is no electron transfer, molecular compounds do not contain ions; instead, they consist of discrete, neutral molecules. 
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Updated: Jan 29, 2026

Purification and Reconstitution of TRPV1 for Spectroscopic Analysis
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Plataforma espectroscópica integrada LIBS-Raman para análisis elemental y molecular concurrente

Sungho Shin1, John Park2, Duk-Jo Kong1,2

  • 1GIST InnoCORE Research Center, Gwangju Institute of Science and Technology, 61005 Gwangju, Republic of Korea.

Analytical methods : advancing methods and applications
|January 28, 2026
PubMed
Resumen

Un nuevo sistema compacto combina la espectroscopia de emisión atómica inducida por láser (LIBS) y la espectroscopia Raman (RS) para el análisis simultáneo de microplásticos y metales adsorbidos. Esta tecnología permite la identificación y cuantificación precisas de contaminantes para la monitorización ambiental.

Palabras clave:
microplásticosmetalesespectroscopia LIBSespectroscopia Ramancontaminación ambientalciencia ambientalquímica analíticaanálisis de materialesespectroscopía

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Área de la Ciencia:

  • Ciencias Ambientales y Química Analítica
  • Espectroscopía y Análisis de Materiales

Sus antecedentes:

  • Las partículas de microplásticos (MPs) son contaminantes ambientales omnipresentes.
  • Los MPs pueden adsorber metales tóxicos y compuestos orgánicos, lo que representa riesgos para los ecosistemas y la salud humana.

Objetivo del estudio:

  • Desarrollar una plataforma analítica compacta para el análisis molecular y elemental simultáneo de partículas de microplásticos.
  • Permitir la correlación directa entre la identidad del polímero y el contenido de metal adsorbido.

Principales métodos:

  • Integración de la espectroscopia de emisión atómica inducida por láser (LIBS) y la espectroscopia Raman (RS) en una ruta óptica compartida.
  • Adquisición de señales consecutivas de LIBS y Raman del mismo punto de microplástico.
  • Aplicación de aprendizaje automático (modelo de mezcla gaussiana, k-means) para el análisis de datos espectrales.

Principales resultados:

  • Discriminación exitosa de poliestireno (PS), polietileno (PE) y polipropileno (PP) mediante espectroscopia Raman.
  • Detección de plomo (Pb) y cobre (Cu) en cuentas de PS expuestas a metales mediante LIBS, con intensidades dependientes de la concentración.
  • Límites de detección alcanzados de 2,29 ppm para Pb y 1,61 ppm para Cu.
  • Precisión de clasificación no supervisada de hasta el 99,3% utilizando algoritmos de aprendizaje automático.

Conclusiones:

  • El sistema integrado LIBS-RS ofrece un rendimiento analítico comparable al de instrumentos a escala de laboratorio.
  • El sistema proporciona huellas moleculares para la monitorización de microplásticos y contaminantes desplegables en campo.
  • Este enfoque facilita la identificación y cuantificación precisas de microplásticos y metales tóxicos asociados.