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Mc 115

Moscovium (Mc)

post-transition-metal
Periode: 7 Gruppe: 15 Block: p

Expected to be a Solid

Standardatomgewicht

[289]

Elektronenkonfiguration

[Rn] 7s2 7p3 5f14 6d10 (Vorhergesagt)

Schmelzpunkt

396,85 °C

Siedepunkt

1126,85 °C

Dichte

1,35e+4 kg/m³

Oxidationszustände

+1, +3

Elektronegativität (Pauling)

N/A

Ionisierungsenergie (1.)

N/A

Entdeckungsjahr

2004

Atomradius

187 pm

Details

Namensherkunft Named after the city of Moscov.
Entdeckungsland Russia
Entdecker Joint Institute for Nuclear Research

Moscovium is a synthetic transactinide element in group 15, below bismuth. It has been made only atom by atom in heavy-ion fusion experiments, and all confirmed isotopes are highly radioactive and short-lived. Its chemistry has not been directly characterized in bulk; relativistic calculations predict a very heavy p-block metal with chemistry differing from lighter pnictogens, probably favoring the +1 and +3 oxidation states more than a stable +5 state.

Moscovium does not occur naturally in the Earth’s crust. The name moscovium and the symbol Mc, are the accepted ones for element 115. The name is in recognition of the Moscow region and honors the ancient Russian land that is home to the Joint Institute for Nuclear Research (JIRN), where the discovery experiments were conducted using the Dubna gas filled recoil separator in combination with the heavy ion accelerator capabilities of the Flerov Laboratory of Nuclear Reactions.

48Ca and 243Am were bombarded together in a cyclotron during a series of experiments from 14 July to 10 August 2003 (Fig. IUPAC.115.1). In February 2004, the results from these experiments were released in a report that stated “ununpentium” had been synthesized. This initial name means “115” in the IUPAC systematic naming scheme, which combines Latin and Greek names to produce un-un-pentium for 115. Moscovium has no known isotopic applications aside from scientific research.

On February 2, 2004, scientists working at the Joint Institute for Nuclear Research in Dubna, Russia, along with scientists from the U.S. Department of Energy's Lawrence Livermore National Laboratory and Oak Ridge National Laboratory, announced the creation of moscovium. In experiments performed between July 14, 2003 and August 10, 2003, atoms of americium-243 were bombarded with ions of calcium-48 using a device called a cyclotron. This produced one atom of moscovium-287 and three atoms of moscovium-288. All four atoms quickly decayed into other elements. Moscovium's most stable isotope, moscovium-289, has a half-life of about 220 milliseconds. It decays into nihonium-285 through alpha decay.

On Novemer 28th, 2016, element 115 was named Moscovium with the symbol Mc. Moscovium is the Moscow region of Russia, which is home to much of Russia’s superheavy element research. Muscovium was discovered by together by the Joint Institute for Nuclear Research, Dubna (Russia), Oak Ridge National Laboratory (USA), Vanderbilt University (USA) and Lawrence Livermore National Laboratory (USA).

Bilder

Eigenschaften

Physikalisch

Atomradius (empirisch)
187 pm Vergleiche Atomradius (empirisch) aller Elemente →
Dichte
1,35 × 104 kg/m³ Vergleiche Dichte aller Elemente →
Aggregatzustand bei Standardbedingungen
Fest Vergleiche Aggregatzustand bei Standardbedingungen aller Elemente →
Schmelzpunkt
396,85 °C Vergleiche Schmelzpunkt aller Elemente →
Siedepunkt
1126,85 °C Vergleiche Siedepunkt aller Elemente →

Chemisch

Elektronenaffinität
0,3 eV
Oxidationszustände
+1, +3 Vergleiche Oxidationszustände aller Elemente →
Valenzelektronen
5 Vergleiche Valenzelektronen aller Elemente →
Elektronenkonfiguration
[Rn] 7s2 7p3 5f14 6d10 (Vorhergesagt)

Thermodynamisch

N/A

Nuklear

Protonen
115 Vergleiche Protonen aller Elemente →
Neutronen
177 Vergleiche Neutronen aller Elemente →
Bekannte Isotope
6 Vergleiche Bekannte Isotope aller Elemente →
Stabile Isotope
0 Vergleiche Stabile Isotope aller Elemente →
Massenzahl (stabilstes)
289
Stabilstes Isotop
Mc-292
Entdeckungsjahr
2004

Häufigkeit

N/A

Kristallstruktur

N/A

Elektronische Struktur

Elektronen pro Schale
14, 10, 5 Vergleiche Elektronen pro Schale aller Elemente →

Identifikatoren

CAS-Nummer
54085-64-2 Vergleiche CAS-Nummer aller Elemente →
InChI
InChI=1S/Mc
InChI-Key
QDXZEHQJHSHEQF-UHFFFAOYSA-N

Elektronenkonfiguration Vorhergesagt

Ionenladung
Protonen 115
Elektronen 0
Ladung Neutral
Konfiguration —
Elektronenkonfiguration
Vorhergesagt
—

Elektronenkonfigurationsdaten für dieses Ion nicht verfügbar.

Atommodell

Protonen 115
Neutronen 174
Elektronen 115
Massenzahl 289
Stabilität Radioaktiv

Isotope ändern die Neutronenzahl, Masse und Stabilität — nicht die Elektronenkonfiguration eines neutralen Atoms.

N/A

Schematisches Atommodell, nicht maßstabsgetreu.

Atomarer Fingerabdruck

Emissions- / Absorptionsspektrum

0 / 0 (0 0 mit Intensität)
Gemessen
Emission Sichtbar: 380–750 nm

Isotopenverteilung

Keine stabilen Isotope.

MassenzahlAtommasse (u)Natürliche HäufigkeitHalbwertszeit
290 Radioaktiv290,19598 ± 0,00073N/A840 ms
289 Radioaktiv289,19363 ± 0,00089N/A410 ms
288 Radioaktiv288,19274 ± 0,00062N/A177 ms
287 Radioaktiv287,1907 ± 0,00052N/A60 ms
292 Radioaktiv292,200323 ± 0,000751N/A5 Sekunden
Gemessen

Phase / Zustand

1 atm / 101.325 kPa Vorhergesagt
Fest 25 °C (298,15 K)

Grund: 371,9 °C unter Schmelzpunkt (396,85 °C)

Schmelzpunkt 396,85 °C
Siedepunkt 1126,85 °C
Unter Schmelzpunkt um 371,9 °C
0 K Aktuelle Temperatur: 25 °C 6000 K
Phasenzeitlinie

Schematisch, nicht maßstabsgetreu

Fest
Flüssig
Gas
Schmelzen
Sieden
25°C
Fest
Flüssig
Gas
Aktuell

Phasenübergangspunkte

Schmelzpunkt Vorhergesagt
396,85 °C
Siedepunkt Vorhergesagt
1126,85 °C
Aktuelle Phase Vorhergesagt
Fest

Dichte

Referenzdichte Vorhergesagt
1,35e+4 kg/m³

Bei Standardbedingungen

Aktuelle Dichte Vorhergesagt
1,35e+4 kg/m³

Bei Standardbedingungen

115 Mc 289

Moscovium — Atomorbital-Visualisierer

[Rn] 7s2 7p3 5f14 6d10 (Vorhergesagt)
Energieniveaus 2 8 18 32 32 18 5
Oxidationszustände +1, +3
HOMO 7p n=7 · l=1 · m=-1
Moscovium — Atomorbital-Visualisierer Vorschau
Three.js lädt nur auf Anfrage
115 Mc 289

Moscovium — Kristallstruktur-Visualisierer

Kristallstrukturdaten nicht verfügbar

Isotope (5)

MassenzahlAtommasse (u)Natürliche HäufigkeitHalbwertszeitZerfallsart
290 Radioaktiv290,19598 ± 0,00073N/A840 ms
α =100%
289 Radioaktiv289,19363 ± 0,00089N/A410 ms
α =100%
288 Radioaktiv288,19274 ± 0,00062N/A177 ms
α =100%
287 Radioaktiv287,1907 ± 0,00052N/A60 ms
α =100%
292 Radioaktiv292,200323 ± 0,000751N/A5 Sekunden
α ?SF ?
290 Radioaktiv
Atommasse (u) 290,19598 ± 0,00073
Natürliche Häufigkeit N/A
Halbwertszeit 840 ms
Zerfallsart
α =100%
289 Radioaktiv
Atommasse (u) 289,19363 ± 0,00089
Natürliche Häufigkeit N/A
Halbwertszeit 410 ms
Zerfallsart
α =100%
288 Radioaktiv
Atommasse (u) 288,19274 ± 0,00062
Natürliche Häufigkeit N/A
Halbwertszeit 177 ms
Zerfallsart
α =100%
287 Radioaktiv
Atommasse (u) 287,1907 ± 0,00052
Natürliche Häufigkeit N/A
Halbwertszeit 60 ms
Zerfallsart
α =100%
292 Radioaktiv
Atommasse (u) 292,200323 ± 0,000751
Natürliche Häufigkeit N/A
Halbwertszeit 5 Sekunden
Zerfallsart
α ?SF ?

Erweiterte Eigenschaften

Kovalente Radien (Erweitert)

Kovalenzradius (Pyykkö)
162 pm

Nummerierungsskalen

Mendeleev
98

Polarisierbarkeit & Dispersion

Dipolpolarisierbarkeit
71 a.u.
Dipolpolarisierbarkeit (Uns.)
20 a.u.

Erweiterte Referenzdaten

Isotopenzerfallsarten (8)
IsotopModusIntensität
287A100%
288A100%
289A100%
290A100%
291A—
291SF—
292A—
292SF—

Zusätzliche Daten

Referenzen

(8)
2 Atomic Mass Data Center (AMDC), International Atomic Energy Agency (IAEA)
Mc

The half-life and atomic mass data was provided by the Atomic Mass Data Center at the International Atomic Energy Agency.

3 IUPAC Commission on Isotopic Abundances and Atomic Weights (CIAAW)
Moscovium

Element data are cited from the Atomic weights of the elements (an IUPAC Technical Report). The IUPAC periodic table of elements can be found at https://iupac.org/what-we-do/periodic-table-of-elements/. Additional information can be found within IUPAC publication doi:10.1515/pac-2015-0703 Copyright © 2020 International Union of Pure and Applied Chemistry.

4 IUPAC Periodic Table of the Elements and Isotopes (IPTEI)

The information are cited from Pure Appl. Chem. 2018; 90(12): 1833-2092, https://doi.org/10.1515/pac-2015-0703.

Lizenzhinweis: Copyright (c) 2020 International Union of Pure and Applied Chemistry. The International Union of Pure and Applied Chemistry (IUPAC) contribution within Pubchem is provided under a CC-BY-NC-ND 4.0 license, unless otherwise stated.
5 Jefferson Lab, U.S. Department of Energy
Moscovium

Thomas Jefferson National Accelerator Facility (Jefferson Lab) is one of 17 national laboratories funded by the U.S. Department of Energy. The lab's primary mission is to conduct basic research of the atom's nucleus using the lab's unique particle accelerator, known as the Continuous Electron Beam Accelerator Facility (CEBAF). For more information visit https://www.jlab.org/

Lizenzhinweis: Please see citation and linking information: https://education.jlab.org/faq/index.html
6 Los Alamos National Laboratory, U.S. Department of Energy
Moscovium

The periodic table at the LANL (Los Alamos National Laboratory) contains basic element information together with the history, source, properties, use, handling and more. The provenance data may be found from the link under the source name.

7 NIST Physical Measurement Laboratory
Moscovium

The periodic table contains NIST's critically-evaluated data on atomic properties of the elements.

8 PubChem Elements
Moscovium

This section provides all form of data related to element Moscovium.

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