Sulfuric Acid

Sulfuric Acid

SCHEMBL401759

O=S(=O)(O)O.[H]

nearest known ligand 0.00

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Known targets — ChEMBL curated mechanism

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

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

⚠ Novel chemotype — no close known analogue (best Tanimoto < 0.3). Unexplored chemical space relative to ChEMBL.

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
Sulfuric Acid SCHEMBL19639832 0.94
Sulfuric Acid SCHEMBL9754774 0.94
Sulfuric Acid SCHEMBL28018817 0.94
Sulfuric Acid SCHEMBL418399 0.93 CA5A (1.00)
Sulfuric Acid SCHEMBL8532128 0.93 CA5A (1.00)
Sulfuric Acid SCHEMBL434526 0.93 CA5A (1.00)
Sulfuric Acid SCHEMBL110268 0.93 CA5A (1.00)
Sulfuric Acid SCHEMBL2555505 0.93 CA5A (1.00)
Sulfuric Acid SCHEMBL3699224 0.93 CA5A (1.00)
Sulfuric Acid SCHEMBL562154 0.93 CA5A (1.00)

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 13 patents. claimed = in the patent's claims; disclosed = body only.

PatentTitleAssigneePublishedPriorityFilingCountryStatus
CN-104250731-B Catalysts for electroless metallization containing five-membered heterocyclic nitrogen compounds 罗门哈斯电子材料有限公司 2017-05-17 CN disclosed
CN-103641802-B A kind of method that one-step method heterogeneous system prepares 5-bromomethyl furfural 华南理工大学 2016-08-17 CN disclosed
CN-105821397-A Stable nanoparticles for electroless plating 罗门哈斯电子材料有限公司 2016-08-03 CN disclosed
US-9287114-B2 Method of modifying surfaces UNIVERSITY COURT OF THE UNIVERSITY OF ST ANDREWS (GB) 2016-03-15 US disclosed
US-20140203414-A1 Method Of Modifying Surfaces UNIVERSITY COURT OF THE UNIVERSITY OF ST ANDREWS (GB) 2014-07-24 US disclosed
EP-1251926-B1 SHALLOW BED FLUID TREATMENT APPARATUS AMALGAMATED RES INC (US) 2012-01-25 EP disclosed
CN-101646943-A Method for blocking non-specific protein binding on functionalized surfaces SRU BIOSYSTEMS INC US 2010-02-10 CN disclosed
EP-1503328-B1 Single-photon source HITACHI LTD (JP) 2007-05-23 EP disclosed
WO-2006064192-A1 BAND STOP FILTER THE UNIVERSITY OF LEEDS (GB) 2006-06-22 WO disclosed
US-20050147917-A1 Superfine metal of defined particle size having organic coating on surface sintered with latent curing agent in stable dispersion medium; printed circuits; noncracking, peel resistance; transferring paste on substrate by relief, intaglio, offset, or screen printing HITACHI VIA MECHANICS, LTD. (JP) 2005-07-07 US disclosed
CN-1625420-A Medical treatment system and production method therefor JURIDICAL FOUNDATION OSAKA IND (JP) 2005-06-08 CN disclosed
EP-1503328-A1 Single-photon source Hitachi, Ltd. (JP) 2005-02-02 EP disclosed
EP-0732731-A2 Treatment of a titanium nitride layer to improve resistance to elevated temperatures APPLIED MATERIALS, INC. (US) 1996-09-18 EP disclosed