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Am 95

Americium (Am)

actinide
Periode: 7 Blok: f

Solid

Bobot Atom Standar

[243]

Konfigurasi elektron

[Rn] 7s2 5f7

Titik lebur

1175,85 °C

Titik didih

2010,85 °C

Massa jenis

1,369e+4 kg/m³

Bilangan oksidasi

+2, +3, +4, +5, +6, +7

Keelektronegatifan (Pauling)

1,3

Energi ionisasi (ke-1)

5,97381 eV

Tahun penemuan

1944

Jari-jari atom

175 pm

Detail

Asal nama Named for the American continent, by analogy with europium.
Negara penemuan United States
Penemu G.T.Seaborg, R.A.James, L.O.Morgan, A.Ghiorso

Americium is a synthetic transuranium actinide made mainly by neutron capture in plutonium during reactor operation. It is radioactive, silvery in metal form, and chemically resembles other mid-actinides more than the lanthanides only superficially. The most accessible isotope, ²⁴¹Am, has a half-life of about 432 years and is important because it can be isolated from aged plutonium and used as a compact alpha and gamma source.

Americium does not occur naturally in the Earth’s crust. In 1944, it was first synthesized by Glenn T. Seaborg and his team at the University of California Laboratory in Berkeley via multiple neutron capture reaction on 239Pu to produce 241Am : 239Pu (n, γ) 240Pu, 240Pu (n, γ) 241Pu, and 241Pu→ 241Am+β −.

The initial americium samples weighed a few micrograms; they were barely visible and were identified by their radioactivity. The first substantial amounts of metallic americium were not prepared until 1951 via reduction of americium(III) fluoride with barium metal in high vacuum at 1100 °C, producing up to 200 milligrams. The luster of freshly prepared americium metal is white and more silvery than plutonium or neptunium prepared in the same manner. It appears to be more malleable than uranium or neptunium and tarnishes slowly in dry air at room temperature. In solution, oxidation states III, IV, V, and VI are known and there is an unsubstantiated claim of the existence of Am(VII). Am(IV) is unstable in acidic media but in strongly basic carbonate solutions Am(IV) is stable. In fact, in carbonate solutions, americium has been shown to be the second element after plutonium to have in coexistence all four oxidation states simultaneously. There are numerous compounds of americium. Its oxides have the most practical applications.

Americium was discovered in 1944 by the American scientists Glenn T. Seaborg, Ralph A. James, Leon O. Morgan and Albert Ghiorso. They produced americium by bombarding plutonium-239, an isotope of plutonium, with high energy neutrons. This formed plutonium-240, which was itself bombarded with neutrons. The plutonium-240 changed into plutonium-241, which then decayed into americium-241 through beta decay. This work was carried out at the University of Chicago's Metallurgical Laboratory, now known as Argonne National Laboratory. Americium's most stable isotope, americium-243, has a half-life of about 7,370 years. It decays into neptunium-239 through alpha decay.

Americium was the fourth synthetic transuranic element to be discovered and was named after the continent of North America by analogy to its lighter lanthanide homologue, europium, which was named after Europe, its continent of discovery. Americium was made by Glenn Seaborg, Ralph James, Leon Morgan, and Albert Ghiorso late in 1944 at the wartime metallurgical laboratory at the University of Chicago. It was made as the result of successive neutron capture reactions by plutonium isotopes in a nuclear reactor. The product element was quite difficult to separate based on its anticipated properties, which were incorrect as it turned out. Unlike the lighter previously discovered transuranium elements placed in the main block of the periodic table, americium behaved chemically like the lanthanide series of elements. It exhibited, for example, the trivalent state as the most stable in aqueous solutions. This behavior and the similar behavior of the newly discovered element, curium, prompted Glenn Seaborg to boldly and radically revise the periodic table and create the actinide series of elements.

The first americium isotope identified was that of 241Am, which has an alpha decay half-life of 432.2 years to daughter neptunium-237. The initial discovery was classified as secret as part of the Manhattan Project during World War II, but the discovery was later declassified. Seaborg announced the discovery of elements 95, americium 96, and curium on the U.S. children’s radio show,"The Quiz Kids" five days before his planned presentation at an American Chemical Society meeting in November 1945. His announcement resulted when one of the young listeners asked whether any new transuranium element beside plutonium and neptunium had been discovered.

Gambar

Sifat

Fisika

Jari-jari atom (empiris)
175 pm Bandingkan Jari-jari atom (empiris) semua unsur →
Jari-jari kovalen
180 pm Bandingkan Jari-jari kovalen semua unsur →
Jari-jari van der Waals
244 pm Bandingkan Jari-jari van der Waals semua unsur →
Massa jenis
1,369 × 104 kg/m³ Bandingkan Massa jenis semua unsur →
Volume molar
0,0208 L/mol
Fase pada STP
Padat Bandingkan Fase pada STP semua unsur →
Titik lebur
1175,85 °C Bandingkan Titik lebur semua unsur →
Titik didih
2010,85 °C Bandingkan Titik didih semua unsur →

Kimia

Keelektronegatifan (Pauling)
1,3 Bandingkan Keelektronegatifan (Pauling) semua unsur →
Afinitas elektron
0,1 eV
Energi ionisasi (ke-1)
5,97381 eV Bandingkan Energi ionisasi (ke-1) semua unsur →
Energi ionisasi (ke-2)
11,70004 eV Bandingkan Energi ionisasi (ke-2) semua unsur →
Energi ionisasi (ke-3)
21,700075 eV Bandingkan Energi ionisasi (ke-3) semua unsur →
Energi ionisasi (ke-4)
36,800127 eV Bandingkan Energi ionisasi (ke-4) semua unsur →
Energi ionisasi (ke-5)
50,000172 eV Bandingkan Energi ionisasi (ke-5) semua unsur →
Bilangan oksidasi
+2, +3, +4, +5, +6, +7 Bandingkan Bilangan oksidasi semua unsur →
Elektron valensi
3 Bandingkan Elektron valensi semua unsur →
Konfigurasi elektron
[Rn] 7s2 5f7

Termodinamika

Kalor peleburan
0,14914235 eV Bandingkan Kalor peleburan semua unsur →
Kalor penguapan
2,471887 eV Bandingkan Kalor penguapan semua unsur →
Kalor sublimasi
2,943463 eV
Kalor atomisasi
2,943463 eV
Entalpi atomisasi
2,943463 eV

Nuklir

Proton
95 Bandingkan Proton semua unsur →
Neutron
148 Bandingkan Neutron semua unsur →
Isotop yang diketahui
27 Bandingkan Isotop yang diketahui semua unsur →
Isotop stabil
0 Bandingkan Isotop stabil semua unsur →
Nomor massa (paling stabil)
243
Isotop paling stabil
Am-243
Tahun penemuan
1944

Kelimpahan

Tidak tersedia

Struktur Kristal

Tidak tersedia

Struktur Elektronik

Elektron per kulit
2, 8, 18, 32, 25, 8, 2 Bandingkan Elektron per kulit semua unsur →

Pengenal

Nomor CAS
7440-35-9 Bandingkan Nomor CAS semua unsur →
Simbol term
8S°7/2
InChI
InChI=1S/Am
Kunci InChI
LXQXZNRPTYVCNG-UHFFFAOYSA-N

Konfigurasi Elektron Diukur

Muatan ion
Proton 95
Elektron 95
Muatan Netral
Konfigurasi Am: 5f⁷ 7s²
Konfigurasi elektron
Diukur
[Rn] 5f⁷ 7s²
1s² 2s² 2p⁶ 3s² 3p⁶ 3d¹⁰ 4s² 4p⁶ 4d¹⁰ 5s² 5p⁶ 4f¹⁴ 5d¹⁰ 6s² 6p⁶ 5f⁷ 7s²
Diagram orbital
1s
2/2
2s
2/2
2p
6/6
3s
2/2
3p
6/6
4s
2/2
3d
10/10
4p
6/6
5s
2/2
4d
10/10
5p
6/6
6s
2/2
4f
14/14
5d
10/10
6p
6/6
7s
2/2
5f
7/14 7↑
Total elektron: 95 Tidak berpasangan: 7 ?

Model atom

Proton 95
Neutron 133
Elektron 95
Nomor massa 228
Kestabilan Radioaktif

Isotop mengubah jumlah neutron, massa, dan kestabilan — bukan konfigurasi elektron atom netral.

Model atom skematis, tidak sesuai skala.

Sidik Jari Atom

Spektrum Emisi / Absorpsi

0 / 0 (0 0 dengan intensitas)
Diukur
Emisi Tampak: 380–750 nm

Distribusi Isotop

Tidak memiliki isotop stabil.

Nomor massaMassa atom (u)Kelimpahan alamiWaktu paruh
241 Radioaktif241,0568293 ± 0,0000019Tidak tersedia432.6 tahun
225 Radioaktif225,045508 ± 0,000429Tidak tersedia100 us
226 Radioaktif226,04613 ± 0,000322Tidak tersedia100 us
228 Radioaktif228,046001 ± 0,000215Tidak tersedia100 ms
238 Radioaktif238,051985 ± 0,000054Tidak tersedia98 menit
Diukur

Fase / Wujud

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

Alasan: 1150,8 °C di bawah titik lebur (1175,85 °C)

Titik lebur 1175,85 °C
Titik didih 2010,85 °C
Di bawah titik lebur sebesar 1150,8 °C
0 K Suhu saat ini: 25 °C 6000 K
Linimasa fase

Skematis, tidak sesuai skala

Padat
Cair
Gas
Peleburan
Pendidihan
25°C
Padat
Cair
Gas
Saat ini

Titik transisi fase

Titik lebur Literatur
1175,85 °C
Titik didih Literatur
2010,85 °C
Fase saat ini Dihitung
Padat

Energi transisi

Kalor peleburan Literatur
0,14914235 eV

Energi yang diperlukan untuk meleburkan 1 mol pada titik lebur

Kalor penguapan Literatur
2,471887 eV

Energi yang diperlukan untuk menguapkan 1 mol pada titik didih

Kalor sublimasi Literatur
2,943463 eV

Energi yang diperlukan untuk menyublimkan 1 mol pada titik sublimasi

Massa jenis

Massa jenis referensi Literatur
1,369e+4 kg/m³

Pada kondisi standar

Massa jenis saat ini Dihitung
1,369e+4 kg/m³

Pada kondisi standar

Spektrum Atom

Menampilkan 10 dari 95. Diurutkan berdasarkan muatan ion (menaik).

Data Garis Spektrum ?

IonMuatanTotal garisProbabilitas transisiPenamaan tingkat energi
Am I 02700
Am II +16700
Data Garis Spektrum NIST →

Data Tingkat Energi ?

IonMuatanTingkat energi
Am I 02
Am II +12
Am III +22
Am IV +32
Am V +42
Am VI +52
Am VII +62
Am VIII +72
Am IX +82
Am X +92
Data Tingkat Energi NIST →
95 Am 243

Americium — Visualisasi Orbital Atom

[Rn]7s25f7
Tingkat energi 2 8 18 32 25 8 2
Bilangan oksidasi +2, +3, +4, +5, +6, +7
HOMO 5f n=5 · l=3 · m=-3
Americium — Pratinjau Visualisasi Orbital Atom
Three.js hanya dimuat saat diminta
95 Am 243

Americium — Visualisasi Struktur Kristal

Data struktur kristal tidak tersedia

Jari-jari Ion

MuatanKoordinasiSpinJari-jari
+27Tidak tersedia121 pm
+28Tidak tersedia126 pm
+29Tidak tersedia131 pm
+36Tidak tersedia97.5 pm
+38Tidak tersedia109.00000000000001 pm
+39Tidak tersedia115.7 pm
+46Tidak tersedia85 pm
+48Tidak tersedia95 pm

Senyawa

Am
243,061 u
Am
241,057 u
Am
243,061 u
Am
242,060 u
Am
240,055 u
Am
244,064 u
Am
246,070 u
Am
245,066 u
Am
239,053 u
Am
238,052 u
Am
237,050 u
Am
248,076 u

Isotop (5)

About 19 isotopes and 8 nuclear isomers are known for americium. There are two long-lived alpha-emitters, 241Am and 243Am with half-lives of 432.2 and 7,370 years, respectively, and the nuclear isomer 242Am has a half-life of 141 years. The half-lives of other isotopes and isomers range from 0.64 microseconds for 245Am to 50.8 hours for 240Am. As with most other actinides, the isotopes of americium with odd number of neutrons have relatively high rate of nuclear fission and low critical mass. High purity kilogram quantities are now available for the longer lived isotopes, 241Am and 243Am.

Nomor massaMassa atom (u)Kelimpahan alamiWaktu paruhMode peluruhan
241 Radioaktif241,0568293 ± 0,0000019Tidak tersedia432.6 tahun
α =100%SF =3.6e-10±0.9%
225 Radioaktif225,045508 ± 0,000429Tidak tersedia100 us
α ?SF ?
226 Radioaktif226,04613 ± 0,000322Tidak tersedia100 us
α ?SF ?
228 Radioaktif228,046001 ± 0,000215Tidak tersedia100 ms
α ?SF ?
238 Radioaktif238,051985 ± 0,000054Tidak tersedia98 menit
β+ =100%α =1.0e-4±0.4%
241 Radioaktif
Massa atom (u) 241,0568293 ± 0,0000019
Kelimpahan alami Tidak tersedia
Waktu paruh 432.6 tahun
Mode peluruhan
α =100%SF =3.6e-10±0.9%
225 Radioaktif
Massa atom (u) 225,045508 ± 0,000429
Kelimpahan alami Tidak tersedia
Waktu paruh 100 us
Mode peluruhan
α ?SF ?
226 Radioaktif
Massa atom (u) 226,04613 ± 0,000322
Kelimpahan alami Tidak tersedia
Waktu paruh 100 us
Mode peluruhan
α ?SF ?
228 Radioaktif
Massa atom (u) 228,046001 ± 0,000215
Kelimpahan alami Tidak tersedia
Waktu paruh 100 ms
Mode peluruhan
α ?SF ?
238 Radioaktif
Massa atom (u) 238,051985 ± 0,000054
Kelimpahan alami Tidak tersedia
Waktu paruh 98 menit
Mode peluruhan
β+ =100%α =1.0e-4±0.4%

Sifat Lanjutan

Jari-jari Kovalen (Lanjutan)

Jari-jari kovalen (Pyykkö)
166 pm
Jari-jari kovalen (Pyykkö, ikatan rangkap dua)
135 pm

Jari-jari van der Waals

Alvarez
283 pm
UFF
338,1 pm

Jari-jari Atom & Logam

Jari-jari atom (Rahm)
276 pm

Skala Penomoran

Mendeleev
26
Pettifor
42
Glawe
39

Skala Keelektronegatifan

Ghosh
0

Polarizabilitas & Dispersi

Polarizabilitas dipol
131 a.u.
Polarizabilitas dipol (ketidakpastian)
25 a.u.

Transisi Fase & Alotrop

Titik lebur1449,15 K

Kategori Bilangan Oksidasi

+2 extended
+6 extended
+3 main
+5 extended
+4 extended
+7 extended

Data Referensi Lanjutan

Detail Jari-jari Kristal (8)
MuatanCNSpinrcrystal (pm)Asal
2VII135
2VIII140
2IX145
3VI111,5from r^3 vs V plots,
3VIII123
4VI99from r^3 vs V plots,
4VIII109
3IX—129,7
Mode Peluruhan Isotop (50)
IsotopModeIntensitas
223A100%
223B+—
224A—
224SF—
225A—
225SF—
226A—
226SF—
227A—
227SF—

Data Tambahan

Referensi

(9)
2 Atomic Mass Data Center (AMDC), International Atomic Energy Agency (IAEA)
Am

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)
Americium

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.

Catatan lisensi: 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
Americium

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/

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

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
Americium

The periodic table contains NIST's critically-evaluated data on atomic properties of the elements. The provenance data that include data for atomic spectroscopy, X-ray and gamma ray, radiation dosimetry, nuclear physics, and condensed matter physics may be found from the link under the source name. Ref: https://www.nist.gov/pml/atomic-spectra-database

8 PubChem Elements
Americium

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

9 PubChem Elements
Americium

The element property data was retrieved from publications.

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