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Polymer is the product made of the polymerization reaction of monomer. Molecule should have repetitive structural units. Polymer of low molecular weight is called as low polymer (or oligomer) such as trioxymethylene. Polymer of high-molecular weight, up to thousands or even millions is called as high polymer or high-molecule compound. There are two types of high polymers including natural products and artificially synthetic product. Natural polymer such as protein is the polymers of amino acids while the starch and cellulose are the polymers (polysaccharides) of cyclic polyhydroxy, also known as biopolymers. Most of them are biodegradable and may cause short-term water BOD increment. It can also cause decomposition to generate pollutants such as ammonia, hydrogen sulfide and methane under anaerobic conditions, but will not cause long-term environmental impact. There are many types of synthetic polymers with their products having wide application. Related products include polyvinyl chloride and polystyrene plastics, resins, polyester and rubber. They are non-biodegradable substance. Long-term existence in the environment can cause a huge amount of garbage waste, among which the plasticizer will be evaporated out to pollute the environment, affecting human health at the same time. The monomers of polymer are mostly derived from petroleum, many of which are toxic and harmful substances, such as vinyl chloride which is a carcinogen. Nowadays, people are developing various polymer-containing oxide, peroxide-containing compounds and carbonyl-containing compounds. The polymer, under the sunlight photolysis, will be converted to low molecular weight organic compounds and further become harmless bio-degradable substance without contaminating the environment.

High molecular polymer is a compound consisting of one or several major structural units connecting with each other by covalent bond, also known polymers, high-molecule compound, macromolecular compounds and the like. E.g., polyethylene [-CH2-CH2-] n, Nylon 6 [-NH (CH2) 5CO-] n, whose structural units are respectively-CH2-CH2-, -NH (CH2) 5CO- with the polymerization degree being n.

Because of the high molecular weight (usually 104 to 106), it displays a number of special properties, such as relatively refractory soluble, or insoluble; swelling before being dissolved; much higher solution viscosity than a solution of equal concentration of small molecules; it has great intermolecular forces with usually exhibiting as only viscous liquid or solid form, not able to subject to gasification; the solid has a certain mechanical strength and can be subject to snagging and drawing.

The polymer is consists of a lot of macromolecular polymer chains of varying lengths, this feature is called the polydispersity of the molecular weight. We can use the distribution of the molecule weight to describe its polydispersity. The commonly referred molecular weight of the polymer is the average molecular weight of the polymer. Depending on the different statistical averaging method, there is number average molecular weight [equal to the total mass of the polymer (in g unit) divided by the total amount of the contained molecules of various molecule weights to represent Mm], weight average molecular weight (equal to the sum of the multiply of the molecules of various molecule weight and their corresponding molecular weight, expressed in Mm) and so on. Mm / Mm is called as polydispersity index, used to measure the width of the molecular weight distribution. The greater, the polydispersity index, the wider the molecular weight distribution will be and the greater the degree of dispersion.

The properties of polymers are still largely determined by the shape of the molecular chain. Depending on the shape of the molecular chain, it can be divided into linear, ball-type, network type and body-type, several structures.

The atoms of the main chain in the linear-structure polymer are often arranged in the shape of a long chain and the main chain is connected with in more or less amount of branches of varying lengths. When the polymer of such structure is heated, they tend to be melted, but also be soluble in certain organic solvents, having the probability of forming a crystal and can be oriented artificially. As some small amounts of branched-chain contained in increases the molecular spacing, the structure becomes loose, thereby reducing mechanical strength but increasing the solubility and plasticity. Common polymers belonging to this type include polyethylene, polyvinyl chloride and rubber.

The main chain of the ball-shape-structure polymer is also in long chain shape but with a large number of branches surrounding the main chain, making the molecule become globular. Its strength and elasticity is as high as that of the linear structure with no significant melting point but with excellent solubility. Phenolic resins, urea-formaldehyde resin which are the intermediate of reactions both belong to such structures.

The main chain of the high polymer of network structure is also in long chain shape, but has the bonds cross-linked, forming mesh-shape. It does not undergo melting at high temperatures but can be softened to have plasticity; it is not dissolved in an organic solvent but can swell, i.e. vulcanized rubber belongs to such type of polymer.

The high polymer of body structure has the long-chain as the main chain, being formed through the crosslink with many other molecules in three-dimensional space. However, during the process of polymerization of monomers, it can also be gradually formed through stepwise cross-linking.

The polymer of body structure is hard and brittle and can neither be melted in the high temperature nor do have plasticity. It can’t be dissolved in an organic solvent. The final products of phenol, aldehyde amine, epoxy and polyester, etc. all belong to this structure.
We can make classification for the polymer from different perspectives. According to the property and purpose, it can be divided into chemical fiber, plastics, rubber, paint and adhesives; According to the name of the synthetic reaction, it can be divided into addition polymer (such as polyethylene, polypropylene, etc.), condensation polymers (such as polyesters, polyamides etc.), ring-opening polymer (e.g., polyether, etc.); according to the source, it can be divided into natural polymers (e.g. starch, cellulose, etc.), synthetic polymers (e.g. vinyl polymers, etc.), semi-synthetic polymers (e.g. acetic acid cellulose and so on); according to the elements of the main chain, it can be divide into carbon-chain polymer (the main chain is mainly composed of carbon atoms), hetero chain polymer (the main chain contains, in addition to carbon atoms, oxygen, nitrogen, sulfur and other hetero atoms as well), element-organic polymer (main chain mainly composed of boron, silicon, aluminum, oxygen, nitrogen, sulfur and phosphorus atoms, but side-chain consists of organic groups such as methyl, ethyl, etc.); according to the application functions, it can be divided into general polymer, functional polymer and so on.

The major index of the polymers include strength, hardness, heat resistance, corrosion resistance, abrasion resistance, solvent resistance, light transmittance, and air tightness as well as electrically insulating properties. Density of the polymer is small, being much smaller than that of steel of the same volume; some of them are conductive, magnetic, and some are high temperature resistant, low temperature resistant and radiation resistant; some have excellent air tightness, transparency and so on. It has been widely used in medical, electrical conductivity, heat resistance, construction, packaging materials, plastic and some other fields.
The method of producing a polymer include bulk polymerization (including melt polymerization, referring to that monomer undergoes polymerization upon the action of light, heat and radiation without other media), solution polymerization (polymerization of monomer, initiator dissolved in an appropriate solution), emulsion (under the action of emulsifier and agitation, have the monomer be dispersed in water to form emulsion liquid to have polymerization), suspended polymerization (under the action of stirring and a dispersing agent, a monomer is dispersed into monomer droplets for being suspended in water for polymerization), etc., according to different requirements, we can apply different polymerization methods.

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Structure:
Chemical Name:
Dowex 1X8 chloride form
CAS:
69011-19-4
MF:
C31H39N
Structure:
Chemical Name:
Polycaprolactone
CAS:
24980-41-4
MF:
C6H10O2
Structure:
Chemical Name:
2-?Propenoic acid, polymer with 2-?propenamide and sodium 2-?propenoate (1:1)
CAS:
62649-23-4
MF:
C9H12NNaO5
Chemical Name:
FLUORIDE ON AMBERLYST(R) A-26
CAS:
39339-85-0
MF:
C6H4CH2N(CH3)3F
Structure:
Chemical Name:
ALKYLPHENOL DISULFIDE
CAS:
25085-50-1
MF:
(C10H14O.CH2O)x
Structure:
Chemical Name:
POLY(VINYLIDENE CHLORIDE-CO-ACRYLONITRILE)
CAS:
9010-76-8
MF:
C5H5Cl2N
Chemical Name:
POLYSTYRENE A NH2
Structure:
Chemical Name:
POLY(1-VINYLPYRROLIDONE-CO-2-DIMETHYLAMINOETHYL METHACRYLATE)
CAS:
30581-59-0
MF:
C14H24N2O3
Structure:
Chemical Name:
POLYPHENYLMETHYLDIMETHYLSILOXANE
CAS:
9005-12-3
MF:
C7H8OSi
Structure:
Chemical Name:
Poly(hexamethylenebicyanoguanide-hexamethylenediamine) hydrochloride
CAS:
27083-27-8
MF:
C16H34N10
Chemical Name:
Polyethylene, Oxidized
CAS:
68441-17-8
MF:
C51H102O21Si2
Structure:
Chemical Name:
Polyquaternium-10
CAS:
81859-24-7
MF:
C8H6O6
Structure:
Chemical Name:
POLYBUTADIENE DIACRYLATE
CAS:
9003-17-2
MF:
C4H6
Structure:
Chemical Name:
POLY(STYRENESULFONIC ACID-CO-MALEIC ACID), SODIUM SALT
CAS:
68037-40-1
MF:
C12H10NaO3*
Chemical Name:
Poly(caprolactone) diol
CAS:
36890-68-3
MF:
(C6H10O2·C4H10O3)x
Structure:
Chemical Name:
POLYSULFONE
CAS:
25135-51-7
MF:
C81H66O12S3X2
Structure:
Chemical Name:
Urea formaldehyde
CAS:
9011-05-6
MF:
C2H6N2O2
Structure:
Chemical Name:
Carbonic dichloride, polymer with 4,4-(1-methylethylidene)bis2,6-dibromophenol and 4,4-(1-methylethylidene)bisphenol
CAS:
32844-27-2
MF:
C31H28Br4Cl2O5
Structure:
Chemical Name:
Poly(4-chlorostyrene)
CAS:
24991-47-7
MF:
C8H7Cl
Structure:
Chemical Name:
POLY(ALLYLAMINE)
CAS:
30551-89-4
MF:
C3H7N
Structure:
Chemical Name:
Poly(dicyclopentadiene-co-p-cresol)
CAS:
68610-51-5
MF:
C10H12.C7H8O.C4H8
Structure:
Chemical Name:
POLY(4-VINYLPYRIDINE)
CAS:
25232-41-1
MF:
C7H7N
Structure:
Chemical Name:
NYLON 6/66
CAS:
24993-04-2
MF:
C18H37N3O5
Structure:
Chemical Name:
POLY(ALPHA-METHYLSTYRENE)
CAS:
25014-31-7
MF:
C27H30X2
Chemical Name:
Heat stabilizer for PVC
Structure:
Chemical Name:
P-BROMOSTYRENE RESIN
CAS:
24936-50-3
MF:
C8H7Br
Chemical Name:
Hydroxyl-Modified Vinyl Resin CoPolyMers
Chemical Name:
Anti-corrosion coating
Chemical Name:
Chelex 100 sodiumA
Structure:
Chemical Name:
ACRYLONITRILE/BUTADIENE COPOLYMER
CAS:
68891-50-9
MF:
C21H27N3X2
Chemical Name:
Dowex Marathon C, H+ form
Structure:
Chemical Name:
POLY(VINYLTOLUENE)
CAS:
9017-21-4
MF:
C9H10
Structure:
Chemical Name:
POLY(N-ISOPROPYL ACRYLAMIDE)
CAS:
25189-55-3
MF:
C6H11NO
Chemical Name:
macroporous Merrifield
Chemical Name:
POLYETHYLENE MONOALCOHOL
CAS:
71750-71-5
MF:
CH3(CH2CH2)nCH2OH
Structure:
Chemical Name:
POLY(ETHYLENE-CO-ACRYLIC ACID), ZINC SALT
CAS:
28208-80-2
MF:
C5H8O2
Chemical Name:
Terpene resin
CAS:
9003-74-1
Structure:
Chemical Name:
1-PROPOXY-2-PROPANOL
CAS:
1569-01-3
MF:
C6H14O2
Structure:
Chemical Name:
POLY(2-ETHYL-2-OXAZOLINE)
CAS:
25805-17-8
MF:
C5H9NO
Structure:
Chemical Name:
GALDEN (TM) HT70
CAS:
69991-67-9
MF:
[CF(CF3)CF2O]x(CF2O)y
Chemical Name:
Oxidized polyethylene wax
Chemical Name:
AMBERJET 4400 OH STRONGLY BASIC ANION EXCHANGER
CAS:
9017-79-2
MF:
(C12H18N?C10H10?HO)x
Structure:
Chemical Name:
POLYPROPYLENE, CHLORINATED
CAS:
68442-33-1
MF:
C8H15Cl
Structure:
Chemical Name:
Phenolic epoxy resin
CAS:
61788-97-4
MF:
C21H23ClFNO2
Chemical Name:
ETHYLENEDIAMINE TETRAKIS(PROPOXYLATE-BLOCK-ETHOXYLATE) TETROL
CAS:
11111-34-5
MF:
C22H14
Structure:
Chemical Name:
Acrylates copolymer
CAS:
25133-97-5
MF:
C14H22O6
Structure:
Chemical Name:
MERRIFIELD RESIN
CAS:
9036-15-1
MF:
C19H19Cl
Structure:
Chemical Name:
AMBERLITE(R) IRC-50
CAS:
9002-29-3
MF:
C23H37Cl2N3O
Structure:
Chemical Name:
CUCURBITURIL
CAS:
80262-44-8
MF:
C36H36N24O12
Chemical Name:
GUM MASTIC
CAS:
61789-92-2
Structure:
Chemical Name:
Poly(ethylene glycol-ran-propylene glycol) monobutyl ether
CAS:
9038-95-3
MF:
C9H20O3
Structure:
Chemical Name:
DOWEX(R) 1X8
CAS:
60267-37-0
MF:
C29H34ClN
Structure:
Chemical Name:
Perfluoroalkylethyl acrylate
CAS:
65605-70-1
MF:
C6H7F3O2
Structure:
Chemical Name:
RESIN
MF:
C6H8N3O2R
Chemical Name:
Tristyrylphenol ethoxylates
CAS:
99734-09-5
MF:
C30H24O.(C2H4O)n
Chemical Name:
POLY(STYRENE-CO-MALEIC ACID), PARTIAL ISOOCTYL ESTER, CUMENE TERMINATED
CAS:
160611-46-1
Structure:
Chemical Name:
POLY(1,4-BUTYLENE ADIPATE)
CAS:
25103-87-1
MF:
C10H20O6
Structure:
Chemical Name:
CHITOSAN OLIGOSACCHARIDE LACTATE
CAS:
148411-57-8
MF:
C12H24N2O9
Structure:
Chemical Name:
FLUOROLUBE GREASE, GR-362
CAS:
9002-83-9
MF:
C2ClF3
Structure:
Chemical Name:
NYLON 11
CAS:
25035-04-5
MF:
C33H63N3O3X2
Structure:
Chemical Name:
ZINC RESINATE
CAS:
9010-69-9
MF:
C40H58O4Zn
Structure:
Chemical Name:
POLY(METHYL METHACRYLATE-CO-BUTYL METHACRYLATE)
CAS:
25608-33-7
MF:
C13H22O4
Structure:
Chemical Name:
Glycerin Rosin Ester
CAS:
8050-31-5
MF:
C23H36O4
Structure:
Chemical Name:
Syringaresil diacetate
CAS:
1990-77-8
MF:
C26H30O10
Chemical Name:
BT-S1050
Chemical Name:
Macroporous resin D101
Chemical Name:
Methyl MQ silicone resin
Structure:
Chemical Name:
POLY(VINYL CHLORIDE-CO-VINYL ACETATE)
CAS:
9003-22-9
MF:
C6H9ClO2
Structure:
Chemical Name:
POLY(VINYLIDENE CHLORIDE-CO-METHYL ACRYLATE)
CAS:
25038-72-6
MF:
C6H8Cl2O2
Structure:
Chemical Name:
ETHYLENEDIAMINE TETRAKIS(ETHOXYLATE-BLOCK-PROPOXYLATE) TETROL
CAS:
26316-40-5
MF:
C34H72N2O12
Structure:
Chemical Name:
Poly(ethyl vinyl ether)
CAS:
25104-37-4
MF:
C4H8O
Structure:
Chemical Name:
2,4,6-TRIS[BIS(METHOXYMETHYL)AMINO]-1,3,5-TRIAZINE
CAS:
68002-20-0
MF:
C4H8N6O
Structure:
Chemical Name:
Polychloroprene
CAS:
9010-98-4
MF:
C4H5Cl
Structure:
Chemical Name:
METHYL VINYL ETHER-MONOBUTYL MALEATE COPOLYMER
CAS:
25119-68-0
MF:
C11H18O5
Structure:
Chemical Name:
Polyisoprene-graft-maleic anhydride
CAS:
139948-75-7
MF:
C14H18O3
Structure:
Chemical Name:
POLYSTYRENE-BLOCK-POLYISOPRENE-BLOCK-POLYSTYRENE
CAS:
25038-32-8
MF:
C13H16
Chemical Name:
POLY(VINYLTOLUENE-CO-ALPHA-METHYLSTYRENE)
CAS:
9017-27-0
MF:
[CH2CH(C6H4CH3)]x[CH2C(CH3)(C6H5)]y
Structure:
Chemical Name:
ACRYLONITRILE-METHYL ACRYLATE COPOLYMER
CAS:
24968-79-4
MF:
C7H9NO2
Chemical Name:
MERCAPTOMETHYL POLYSTYRENE
Chemical Name:
AMBERLITE(R) IRA-67
CAS:
80747-90-6
Structure:
Chemical Name:
STYRENE MALEIC ANHYDRIDE COPOLYMER
CAS:
26762-29-8
MF:
C21H22O3
Chemical Name:
POLY(ETHYLENE)
CAS:
68037-39-8
MF:
C2H4
Chemical Name:
DOWEX(R) 1X8
CAS:
69772-06-1
Structure:
Chemical Name:
POLYPROPYLENE-GRAFT-MALEIC ANHYDRIDE, AV ERAGE MW CA. 9,100
CAS:
25722-45-6
MF:
C7H8O3
Structure:
Chemical Name:
Poly(styrene-co-acrylonitrile)
CAS:
9003-54-7
MF:
C33H33N3X2
Chemical Name:
POLYISOPRENE, CHLORINATED
CAS:
68441-58-7
MF:
[CR2CR=C(CR3)CR2]n,R=HorCl
Chemical Name:
Propoxylate neopentylene glycol diacrylate
CAS:
84170-74-1
MF:
[H2C=CHCO2(C3H6O)nCH2]2C(CH3)2
Structure:
Chemical Name:
PHENOXY RESIN
CAS:
26402-79-9
MF:
(C18H20O3)n
Structure:
Chemical Name:
MONO-METHYL POLYETHYLENE GLYCOL 20'000 2-(SUCCINYL-AMINO)ETHYL ETHER
CAS:
92450-99-2
MF:
C11H23NO7
Structure:
Chemical Name:
Potassium polyacrylate
CAS:
25608-12-2
MF:
C3H4O2
Structure:
Chemical Name:
N-VINYLPYRROLIDONE/STYRENE COPOLYMER
CAS:
25086-29-7
MF:
C14H17NO
Structure:
Chemical Name:
DOWEX MAC-3 ION EXCHANGE RESIN
CAS:
9052-45-3
MF:
C13H14O2
Structure:
Chemical Name:
CUCURBIT(7)URIL
CAS:
259886-50-5
MF:
C42H42N28O14
Chemical Name:
DIAION HP-2MG, 100GM
Chemical Name:
DOWEX(R) 50WX4 HYDROGEN FORM
CAS:
69011-20-7
MF:
(C10H12·C10H10·C8H8)x
Chemical Name:
POLY(METHYLSTYRENE-CO-INDENE)
CAS:
69430-35-9
MF:
(C45H78)n
Structure:
Chemical Name:
Resin epoxy
CAS:
24969-06-0
MF:
C3H5ClO
Chemical Name:
Octyl-phenolic curing resin
Structure:
Chemical Name:
Benzenesulfonic acid, dimethyl-, polymer with formaldehyde, sodium salt
CAS:
70788-40-8
MF:
C9H12NaO4S
Chemical Name:
POLY(1-DECENE)
CAS:
68037-01-4
MF:
[CH2CH[(CH2)7CH3]]n