Phosphoric Acid

Phosphoric Acid

SCHEMBL841834

O=P([O-])([O-])[O-].O=P([O-])([O-])[O-].O=P([O-])([O-])[O-].[Al+3].[Ga+3].[In+3]

nearest known ligand 0.39

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Known targets — ChEMBL curated mechanism

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

The experimentally established mechanism targets of Phosphoric Acid. The predicted profile below is derived independently by chemical similarity — agreement is a validation signal, a miss is honest.

Predicted protein targets (top 2)

geneUniProtsupporting neighboursconfidence
SLC34A1 Q06495 1/20 0.39
LMNA P02545 2/20 0.33

Click a target to see other patent compounds predicted against it — the reverse direction, in place.

Similar compounds — the chemically nearest patent molecules

Nearest neighbours by Morgan-fingerprint cosine across the patent-compound collection, with each neighbour's top predicted target and the predicted targets it shares with this molecule.

Compoundsimilaritytop predictedshared targets
Phosphoric Acid SCHEMBL28159134 0.95 SLC34A1 (0.36) SLC34A1LMNA
Phosphoric Acid SCHEMBL7587335 0.94 SLC34A1 (0.42) SLC34A1LMNA
Phosphoric Acid SCHEMBL28213234 0.94 SLC34A1 (0.42) SLC34A1LMNA
Phosphoric Acid SCHEMBL543141 0.94 SLC34A1 (0.42) SLC34A1LMNA
Phosphoric Acid SCHEMBL1449220 0.94 SLC34A1 (0.42) SLC34A1LMNA
Phosphoric Acid SCHEMBL15573786 0.89
Phosphoric Acid SCHEMBL1443633 0.89
Phosphoric Acid SCHEMBL3410708 0.89 SLC34A1 (0.39) SLC34A1LMNA
Phosphoric Acid SCHEMBL3410711 0.89 SLC34A1 (0.39) SLC34A1LMNA
Phosphoric Acid SCHEMBL27688979 0.89 SLC34A1 (0.39) SLC34A1LMNA

Similarity is cosine over the 2,048-bit Morgan fingerprint (≈ Tanimoto). Identical fingerprints score 1.00.

Patent provenance — the patents this molecule appears in, and who filed them

Claimed or disclosed in 150 patents — showing the first 20. claimed = in the patent's claims; disclosed = body only.

PatentTitleAssigneePublishedPriorityFilingCountryStatus
CN-110211950-A The preparation method and display device of a kind of luminescent device, luminescent device 深圳市思坦科技有限公司 2019-09-06 CN claimed
CN-107346798-B Metal bonding light emitting diode and method for forming metal bonding light emitting diode TYNTEK CORP. (CN) 2019-07-16 CN claimed
CN-105428486-A Semiconductor light-emitting diode (LED) chip with three-dimensional P-N junctions and preparation method therefor UNIV NANCHANG 2016-03-23 CN claimed
US-20060151428-A1 Method for roughening a surface of a body, and optoelectronic component OSRAM OPTO SEMICONDUCTORS GMBH (DE) 2006-07-13 US claimed
CN-1209257-C Optical glare limiter BRAUN UWE PETER (DE) 2005-07-06 CN claimed
US-6568738-B1 Optical glare limiter BRAUN UWE PETER (DE) 2003-05-27 US claimed
EP-1206370-B1 OPTICAL GLARE LIMITER BRAUN UWE PETER DIPL-ING (DE) 2003-01-02 EP claimed
CN-1360547-A Optical glare limiter BRAUN UWE PETER (DE) 2002-07-24 CN claimed
EP-1206370-A1 OPTICAL GLARE LIMITER Braun, Uwe Peter, Dipl.-Ing. (DE) 2002-05-22 EP claimed
WO-2001014168-A1 OPTICAL GLARE LIMITER BRAUN UWE PETER (DE) 2001-03-01 WO claimed
US-12588322-B2 Micro light-emitting diode structure and display panel device PlayNitride Display Co., Ltd. (TW) 2026-03-24 US disclosed
US-12532733-B2 Device layout design for improving device performance TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD. (TW) 2026-01-20 US disclosed
US-20260011638-A1 DEVICE LAYOUT DESIGN FOR IMPROVING DEVICE PERFORMANCE TAIWAN SEMICONDUCTOR MFG CO LTD (TW) 2026-01-08 US disclosed
US-20250341743-A1 LIGHT SOURCE ASSEMBLY AND LED DEVICE, DISPLAY DEVICE AND BACKLIGHT MODULE HAVING THE SAME SHENZHEN JUFEI OPTOELECTRONICS CO., LTD. (CN) 2025-11-06 US disclosed
EP-4631036-A1 HYBRID EMISSIVE DISPLAYS Meta Platforms Technologies, LLC (US) 2025-10-15 EP disclosed
US-5615050-A Optical system with reduced focus spot size INTERNATIONAL BUSINESS MACHINES CORPORATION (US) 1997-03-25 US disclosed
US-5608753-A Semiconductor devices incorporating p-type and n-type impurity induced layer disordered material XEROX CORPORATION (US) 1997-03-04 US disclosed
US-5574745-A Semiconductor devices incorporating P-type and N-type impurity induced layer disordered material XEROX CORPORATION (US) 1996-11-12 US disclosed
US-5455429-A Semiconductor devices incorporating p-type and n-type impurity induced layer disordered material XEROX CORPORATION (US) 1995-10-03 US disclosed
US-5396478-A Optical data storage system with aberration compensation for reduced servo crosstalk INTERNATIONAL BUSINESS MACHINES CORPORATION (US) 1995-03-07 US disclosed

Patent text — is the patent's own abstract consistent with the prediction?

For each of this compound's patents that has machine-readable text (3 of them — usually the abstract, not the full specification), we ask MedCPT which protein the text reads most about, and where the chemistry-predicted target lands among 4885 human targets. A high rank means the patent's own wording is consistent with the prediction — a weak, independent signal, not proof of activity.

PatentTitleText reads most aboutPredicted target · text-rank
US-12588322-B2 Micro light-emitting diode structure and display panel device DYNLL2, DYNC1LI1, DYNLL1 SLC34A1 4412/4885LMNA 1285/4885
US-20260011638-A1 DEVICE LAYOUT DESIGN FOR IMPROVING DEVICE PERFORMANCE STUB1, CTCF, ICOSLG SLC34A1 2960/4885LMNA 3731/4885
US-12532733-B2 Device layout design for improving device performance STUB1, CTCF, PTPN9 SLC34A1 3901/4885LMNA 3262/4885

“Text reads most about” is the patent abstract's nearest protein in MedCPT space (background-debiased). Only ~1.4% of patents have machine-readable text, so most compounds won't have this panel.