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P 15

Phosphorus (P)

nonmetal
Periode: 3 Golongan: 15 Blok: p

Solid

Bobot Atom Standar

30,973762 u

Konfigurasi elektron

[Ne] 3s2 3p3

Titik lebur

44,15 °C

Titik didih

280,5 °C

Massa jenis

1820 kg/m³

Bilangan oksidasi

−3, −2, −1, 0, +1, +2, +3, +4, +5

Keelektronegatifan (Pauling)

2,19

Energi ionisasi (ke-1)

10,486686 eV

Tahun penemuan

1669

Jari-jari atom

100 pm

Detail

Asal nama Greek: phosphoros, (bringer of light).
Negara penemuan Germany
Penemu Hennig Brand

Phosphorus is a reactive nonmetal in group 15 and is essential to life as a component of nucleic acids, phospholipids, and energy-transfer molecules. It does not occur naturally as the free element because it is readily oxidized, but it is abundant in phosphate minerals. Elemental phosphorus is notable for its several allotropes, especially highly reactive white phosphorus and more stable red and black forms.

Phosphorus exists in four or more allotropic forms: white (or yellow), red, and black (or violet). Ordinary phosphorus is a waxy white solid; when pure it is colorless and transparent. White phosphorus has two modifications: alpha and beta with a transition temperature at -3.8°C.

It is insoluble in water, but soluble in carbon disulfide. It takes fire spontaneously in air, burning to the pentoxide.

The name derives from the Greek phosphoros for "bringing light" because it has the property of glowing in the dark. This was also the ancient name for the planet Venus, when it appears before sunrise. Phosphorus was discovered by the German merchant Hennig Brand in 1669.

In what is perhaps the most disgusting method of discovering an element, phosphorus was first isolated in 1669 by Hennig Brand, a German physician and alchemist, by boiling, filtering and otherwise processing as many as 60 buckets of urine. Thankfully, phosphorus is now primarily obtained from phosphate rock (Ca3(PO4)2).

From the Greek phosphoros, light bearing; ancient name for the planet Venus when appearing before sunrise. Brand discovered phosphorus in 1669 by preparing it from urine.

Gambar

Sifat

Fisika

Jari-jari atom (empiris)
100 pm Bandingkan Jari-jari atom (empiris) semua unsur →
Jari-jari kovalen
107 pm Bandingkan Jari-jari kovalen semua unsur →
Jari-jari van der Waals
180 pm Bandingkan Jari-jari van der Waals semua unsur →
Jari-jari logam
110 pm Bandingkan Jari-jari logam semua unsur →
Massa jenis
1820 kg/m³ Bandingkan Massa jenis semua unsur →
Volume molar
0,017 L/mol
Fase pada STP
Padat Bandingkan Fase pada STP semua unsur →
Titik lebur
44,15 °C Bandingkan Titik lebur semua unsur →
Titik didih
280,5 °C Bandingkan Titik didih semua unsur →
Kapasitas kalor spesifik
0,769 J/(g·K) Bandingkan Kapasitas kalor spesifik semua unsur →
Kapasitas kalor molar
23,824 J/(mol·K) Bandingkan Kapasitas kalor molar semua unsur →
Struktur kristal
Kubik Bandingkan Struktur kristal semua unsur →

Kimia

Keelektronegatifan (Pauling)
2,19 Bandingkan Keelektronegatifan (Pauling) semua unsur →
Keelektronegatifan (Allen)
2,253
Afinitas elektron
0,7466 eV
Energi ionisasi (ke-1)
10,486686 eV Bandingkan Energi ionisasi (ke-1) semua unsur →
Energi ionisasi (ke-2)
19,769558 eV Bandingkan Energi ionisasi (ke-2) semua unsur →
Energi ionisasi (ke-3)
30,202744 eV Bandingkan Energi ionisasi (ke-3) semua unsur →
Energi ionisasi (ke-4)
51,444047 eV Bandingkan Energi ionisasi (ke-4) semua unsur →
Energi ionisasi (ke-5)
65,025334 eV Bandingkan Energi ionisasi (ke-5) semua unsur →
Bilangan oksidasi
−3, −2, −1, 0, +1, +2, +3, +4, +5 Bandingkan Bilangan oksidasi semua unsur →
Elektron valensi
5 Bandingkan Elektron valensi semua unsur →
Alotrop
["red", "white"]
Konfigurasi elektron
[Ne] 3s2 3p3

Termodinamika

Titik kritis (suhu)
721 °C
Kalor peleburan
0,00684044 eV Bandingkan Kalor peleburan semua unsur →
Kalor penguapan
0,12851739 eV Bandingkan Kalor penguapan semua unsur →
Kalor sublimasi
3,271597 eV
Kalor atomisasi
3,271597 eV
Entalpi atomisasi
3,280303 eV

Nuklir

Proton
15 Bandingkan Proton semua unsur →
Neutron
16 Bandingkan Neutron semua unsur →
Isotop yang diketahui
24 Bandingkan Isotop yang diketahui semua unsur →
Isotop stabil
1 Bandingkan Isotop stabil semua unsur →
Isotop paling stabil
P-31
Tahun penemuan
1669

Kelimpahan

Kelimpahan (kerak Bumi)
1050 mg/kg Bandingkan Kelimpahan (kerak Bumi) semua unsur →
Kelimpahan (samudra)
0,06 mg/L Bandingkan Kelimpahan (samudra) semua unsur →

Struktur Kristal

Konstanta kisi a
717 pm

Struktur Elektronik

Elektron per kulit
2, 8, 5 Bandingkan Elektron per kulit semua unsur →

Pengenal

Nomor CAS
7723-14-0 Bandingkan Nomor CAS semua unsur →
Simbol term
4S°3/2
InChI
InChI=1S/P
Kunci InChI
OAICVXFJPJFONN-UHFFFAOYSA-N

Konfigurasi Elektron Diukur

Muatan ion
Proton 15
Elektron 15
Muatan Netral
Konfigurasi P: 3s² 3p³
Konfigurasi elektron
Diukur
[Ne] 3s² 3p³
1s² 2s² 2p⁶ 3s² 3p³
Diagram orbital
1s
2/2
2s
2/2
2p
6/6
3s
2/2
3p
3/6 3↑
Total elektron: 15 Tidak berpasangan: 3 ?

Model atom

Proton 15
Neutron 16
Elektron 15
Nomor massa 31
Kestabilan Stabil

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

Model atom skematis, tidak sesuai skala.

Sidik Jari Atom

Spektrum Emisi / Absorpsi

25 / 50 (50 50 dengan intensitas)
Diukur
Emisi Tampak: 380–750 nm

Distribusi Isotop

Unsur monoisotopik
Satu-satunya isotop yang terdapat di alam: 31 — 100,0000%
31100,0000%Nomor massaKelimpahan alami (%)
Nomor massaMassa atom (u)Kelimpahan alamiWaktu paruh
31 Stabil30,97376199842 ± 0,0000000007100,0000%Stabil
Diukur

Fase / Wujud

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

Alasan: 19,2 °C di bawah titik lebur (44,15 °C)

Titik lebur 44,15 °C
Titik didih 280,5 °C
Di bawah titik lebur sebesar 19,2 °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
44,15 °C
Titik didih Literatur
280,5 °C
Fase saat ini Dihitung
Padat

Energi transisi

Kalor peleburan Literatur
0,00684044 eV

Energi yang diperlukan untuk meleburkan 1 mol pada titik lebur

Kalor penguapan Literatur
0,12851739 eV

Energi yang diperlukan untuk menguapkan 1 mol pada titik didih

Kalor sublimasi Literatur
3,271597 eV

Energi yang diperlukan untuk menyublimkan 1 mol pada titik sublimasi

Massa jenis

Massa jenis referensi Literatur
1820 kg/m³

Pada kondisi standar

Massa jenis saat ini Dihitung
1820 kg/m³

Pada kondisi standar

Lanjutan

Titik kritis Literatur
721 °C

Spektrum Atom

Menampilkan 10 dari 15. Diurutkan berdasarkan muatan ion (menaik).

Data Garis Spektrum ?

IonMuatanTotal garisProbabilitas transisiPenamaan tingkat energi
P I 0258132133
P II +11007373
P III +2702323
P IV +31297878
P V +4483030
P VI +5555
P VII +6333
P VIII +7202020
P IX +8474747
P X +9262626
Data Garis Spektrum NIST →

Data Tingkat Energi ?

IonMuatanTingkat energi
P I 0289
P II +1162
P III +2129
P IV +3211
P V +468
P VI +560
P VII +662
P VIII +765
P IX +848
P X +958
Data Tingkat Energi NIST →
15 P 30.973761998

Phosphorus — Visualisasi Orbital Atom

[Ne]3s23p3
Tingkat energi 2 8 5
Bilangan oksidasi -3, -2, -1, 0, +1, +2, +3, +4, +5
HOMO 3p n=3 · l=1 · m=-1
Phosphorus — Pratinjau Visualisasi Orbital Atom
Three.js hanya dimuat saat diminta
15 P 30.973761998

Phosphorus — Visualisasi Struktur Kristal

Primitive Cubic · Pearson cP1
Eksperimental
Pearson cP1
No. Koord. 6
Pengemasan 52.000%
Phosphorus — Pratinjau Visualisasi Struktur Kristal
Three.js hanya dimuat saat diminta

Jari-jari Ion

MuatanKoordinasiSpinJari-jari
+36Tidak tersedia44 pm
+54Tidak tersedia17 pm
+55Tidak tersedia28.999999999999996 pm
+56Tidak tersedia38 pm

Senyawa

P
30,974 u
P-3
30,974 u
P-
30,974 u
P-3
30,974 u

Isotop (1)

Nomor massaMassa atom (u)Kelimpahan alamiWaktu paruhMode peluruhan
31 Stabil30,97376199842 ± 0,0000000007100,0000%Stabil
stable
31 Stabil
Massa atom (u) 30,97376199842 ± 0,0000000007
Kelimpahan alami 100,0000%
Waktu paruh Stabil
Mode peluruhan
stable

Garis Spektrum

Menampilkan 50 dari 122. Secara bawaan, hanya garis spektrum dengan intensitas terukur yang ditampilkan.

Panjang gelombang (nm)IntensitasTahap ionisasiJenisTransisiAkurasiSumber
460.2069 nm600P IIemission3s2.3p.4p 3D → 3s2.3p.4d 3F*DiukurNIST
422.2198 nm500P IIIemission3s2.4s 2S → 3s2.4p 2P*DiukurNIST
458.8032 nm500P IIemission3s2.3p.4p 3D → 3s2.3p.4d 3F*DiukurNIST
458.9846 nm500P IIemission3s2.3p.4p 3D → 3s2.3p.4d 3F*DiukurNIST
494.3497 nm500P IIemission3s2.3p.4p 3D → 3s2.3p.5s 3P*DiukurNIST
602.418 nm500P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3DDiukurNIST
604.308 nm500P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3DDiukurNIST
405.9312 nm400P IIIemission3s2.3d 2D → 3s2.4p 2P*DiukurNIST
442.0712 nm400P IIemission3s2.3p.4s 1P* → 3s2.3p.4p 1SDiukurNIST
529.6077 nm400P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3SDiukurNIST
542.588 nm400P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3PDiukurNIST
545.0709 nm400P IIemission3s2.3p.4p 3P → 3s2.3p.5s 3P*DiukurNIST
603.404 nm400P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3DDiukurNIST
424.672 nm350P IIIemission3s2.4s 2S → 3s2.4p 2P*DiukurNIST
608.784 nm350P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3DDiukurNIST
616.56 nm350P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3DDiukurNIST
395.7641 nm300P IIIemission3s.3p.(3P*).4s 4P* → 3s.3p.(3P*).4p 4PDiukurNIST
408.0089 nm300P IIIemission3s2.3d 2D → 3s2.4p 2P*DiukurNIST
424.9655 nm300P IVemission3s.4s 1S → 3s.4p 1P*DiukurNIST
462.6708 nm300P IIemission3s2.3p.4p 3D → 3s2.3p.4d 3F*DiukurNIST
465.8309 nm300P IIemission3s2.3p.4p 3D → 3s2.3p.4d 3F*DiukurNIST
495.4367 nm300P IIemission3s2.3p.4p 3D → 3s2.3p.5s 3P*DiukurNIST
496.9701 nm300P IIemission3s2.3p.4p 3D → 3s2.3p.5s 3P*DiukurNIST
525.3479 nm300P IIemission3s2.3p.4s 1P* → 3s2.3p.4p 1DDiukurNIST
534.4729 nm300P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3PDiukurNIST
538.6895 nm300P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3PDiukurNIST
531.6055 nm250P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3PDiukurNIST
537.8192 nm250P IIemission3s2.3p.4p 3P → 3s2.3p.5s 3P*DiukurNIST
558.8301 nm250P IIemission3s2.3p.4p 3S → 3s2.3p.5s 3P*DiukurNIST
605.55 nm250P IIemission3s2.3p.4p 1D → 3s2.3p.5s 1P*DiukurNIST
390.4811 nm200P IIIemission3s.3p.(3P*).4s 4P* → 3s.3p.(3P*).4p 4PDiukurNIST
405.7449 nm200P IIIemission3s2.3d 2D → 3s2.4p 2P*DiukurNIST
438.5393 nm200P IIemission3s2.3p.4p 1P → 3s2.3p.5s 1P*DiukurNIST
447.527 nm200P IIemission3s2.3p.4p 3P → 3s2.3p.4d 3D*DiukurNIST
449.923 nm200P IIemission3s2.3p.4p 1D → 3s2.3p.4d 1F*DiukurNIST
486.4426 nm200P IIemission3s2.3p.4p 3D → 3s2.3p.5s 3P*DiukurNIST
540.9722 nm200P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3PDiukurNIST
548.3519 nm200P IIemission3s2.3p.4p 3P → 3s2.3p.5s 3P*DiukurNIST
549.9697 nm200P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3PDiukurNIST
550.7174 nm200P IIemission3s2.3p.4p 3P → 3s2.3p.5s 3P*DiukurNIST
554.1139 nm200P IIemission3s2.3p.4p 3P → 3s2.3p.5s 3P*DiukurNIST
558.3235 nm200P IIemission3s2.3p.4p 3P → 3s2.3p.5s 3P*DiukurNIST
534.5854 nm180P Iemission3s2.3p2.(3P).4s 2P → 3s2.3p2.(3P).5p 2P*DiukurNIST
547.7672 nm180P Iemission3s2.3p2.(3P).4s 2P → 3s2.3p2.(3P).5p 2D*DiukurNIST
716.547 nm180P Iemission3s2.3p2.(3P).4p 4D* → 3s2.3p2.(3P).5d 4FDiukurNIST
717.666 nm180P Iemission3s2.3p2.(3P).4p 4D* → 3s2.3p2.(3P).5d 4FDiukurNIST
492.7197 nm150P IIemission3s2.3p.4p 3D → 3s2.3p.5s 3P*DiukurNIST
519.1393 nm150P IIemission3s2.3p.4s 3P* → 3s2.3p.4p 3SDiukurNIST
510.9625 nm140P Iemission3s2.3p2.(3P).4s 4P → 3s2.3p2.(3P).5p 4P*DiukurNIST
515.4842 nm140P Iemission3s2.3p2.(3P).4s 4P → 3s2.3p2.(3P).5p 4D*DiukurNIST

Sifat Lanjutan

Jari-jari Kovalen (Lanjutan)

Jari-jari kovalen (Pyykkö)
111 pm
Jari-jari kovalen (Pyykkö, ikatan rangkap dua)
102 pm
Jari-jari kovalen (Pyykkö, ikatan rangkap tiga)
94 pm

Jari-jari van der Waals

Bondi
180 pm
Batsanov
195 pm
Alvarez
190 pm
UFF
414,7 pm
MM3
222 pm
Dreiding
415 pm

Jari-jari Atom & Logam

Jari-jari atom (Rahm)
223 pm
Jari-jari logam (C12)
128 pm

Skala Penomoran

Mendeleev
94
Pettifor
90
Glawe
89

Skala Keelektronegatifan

Ghosh
0
Miedema
6
Gunnarsson–Lundqvist
5
Robles–Bartolotti
4

Polarizabilitas & Dispersi

Polarizabilitas dipol
25 a.u.
Polarizabilitas dipol (ketidakpastian)
1 a.u.
C₆
185 Ha·Bohr6
C₆ (Gould–Bučko)
187 Ha·Bohr6

Afinitas Kimia

Afinitas proton
626,8 kJ/mol
Kebasaan fase gas
604,8 kJ/mol

Parameter Miedema

Volume molar Miedema
8,6 cm3/mol
Kerapatan elektron Miedema
4

Risiko Pasokan & Ekonomi

Konsentrasi produksi
39
Risiko pasokan relatif
5
Distribusi cadangan
45
Stabilitas politik (produsen terbesar)
24
Stabilitas politik (pemilik cadangan terbesar)
29

Transisi Fase & Alotrop

white
Titik lebur317,3 K
Titik didih553,65 K
Titik kritis (suhu)994,15 K
red Sublimasi
Titik lebur852,35 K
Titik didih704,15 K
Titik kritis (suhu)994,15 K

Kategori Bilangan Oksidasi

+1 extended
−1 extended
+4 extended
+5 main
+2 extended
−2 extended
0 extended
−3 main
+3 main

Data Referensi Lanjutan

Konstanta Pemerisaian (5)
nOrbitalσ
1s0,4422
2p4,0388
2s5,175
3p10,1136
3s9,3582
Detail Jari-jari Kristal (4)
MuatanCNSpinrcrystal (pm)Asal
3VI58Ahrens (1952) ionic radius,
5IV31
5V43
5VI52calculated,
Mode Peluruhan Isotop (50)
IsotopModeIntensitas
24p—
24B+—
24B+p—
25p—
26B+100%
26B+p35,1%
262p2%
27B+100%
27B+p0,1%
28B+100%
Faktor Hamburan Sinar-X (504)
Energi (eV)f₁f₂
10—8,47738
10,1617—8,27092
10,3261—8,06949
10,4931—7,87297
10,6628—7,68123
10,8353—7,49416
11,0106—7,31165
11,1886—7,13359
11,3696—6,95985
11,5535—6,79035

Data Tambahan

Sources

Sources of this element.

Never found free in nature, it is widely distributed in combination with minerals. Phosphate rock, which contains the mineral apatite, an impure tri-calcium phosphate, is an important source of the element. Large deposits are found in Russia, in Morocco, and in Florida, Tennessee, Utah, Idaho, and elsewhere.

Referensi (1)

Production

Production of this element (from raw materials or other compounds containing the element).

White phosphorus may be made by several methods. By one process, tri-calcium phosphate, the essential ingredient of phosphate rock, is heated in the presence of carbon and silica in an electric furnace or fuel-fired furnace. Elementary phosphorus is liberated as vapor and may be collected under phosphoric acid, an important compound in making super-phosphate fertilizers.

Referensi (1)

Referensi

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

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)
Phosphorus

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
Phosphorus

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
Phosphorus

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
Phosphorus

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
Phosphorus

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

9 PubChem Elements
Phosphorus

The element property data was retrieved from publications.

Terakhir diperbarui:

Data terverifikasi:

Konten ditinjau berdasarkan data ilmiah terbaru.